Generated by Rank Math SEO, this is an llms.txt file designed to help LLMs better understand and index this website. # MicruX Technologies: MicruX Technologies is a company specializing in microfluidics and lab-on-a-chip devices for advanced chemical and biological laboratory analysis. ## Sitemaps [XML Sitemap](https://www.micruxfluidic.com/sitemap_index.xml): Includes all crawlable and indexable pages. ## Posts - [MicruX heads to NyNA and ESEAC 2026 🚀](https://www.micruxfluidic.com/nyna-eseac-2026/): The MicruX team is preparing for an exciting June 2026 with participation in two leading international conferences focused on electrochemistry, sensing technologies and microfluidics. - [💧 World Water Day | March 2026](https://www.micruxfluidic.com/202603-world-water-day-march-2026/) - [🔬 FishEUTrust Project Insights | February 2026](https://www.micruxfluidic.com/20260602-fisheutrust-project-insights-february-2026/) - [✨ New Year Updates | January 2026](https://www.micruxfluidic.com/2020601-new-year-updates-january-2026/) - [✨ Season’s Greetings from MicruX – December 2025](https://www.micruxfluidic.com/202512-seasons-greetings-from-micrux-december-2025/) - [» 2024 – 2025 :: Electrochemical and Microfluidic Multisensors Platform Manufactured by Automated and Sustainable Printing (SEKUENS IDE/2025/000642)](https://www.micruxfluidic.com/2024-2025-electrochemical-and-microfluidic-multisensors-platform-manufactured-by-automated-and-sustainable-printing-sekuens-ide-2025-000642/): The project "Electrochemical and Microfluidic Multisensors Platform Manufactured by Automated and Sustainable Printing", carried out by MICRUX FLUIDIC S.L. during 2024–2025, has been funded by SEKUENS. - [» 2024 – 2025 :: Participation in International R&D Programs 2025 (SEKUENS IDE/2025/000643)](https://www.micruxfluidic.com/2024-2025-participation-in-international-rd-programs-2025-sekuens-ide-2025-000643/): The action “Application for International Projects HerAQUA/I-PFAST”, carried out by MICRUX FLUIDIC S.L. during 2024–2025, has been funded by SEKUENS. - [🔬 Electrochemical Sensing Meets AI – November 2025](https://www.micruxfluidic.com/202511-electrochemistry-meets-ai-november-2025/) - [⭐ From thin-film electrodes to transistor sensors – October 2025](https://www.micruxfluidic.com/202510-from-thin-films-to-transistors-october-2025/) - [🥇 Ultra-compact ECSens Bipotentiostat – September 2025](https://www.micruxfluidic.com/202509-ultra-compact-ecsens-bipotentiostat-september-2025/) - [Upcoming event: 76th ISE Annual Meeting (7-12 September 2025, Mainz, GERMANY) 🚀](https://www.micruxfluidic.com/upcoming-event-ise-2025/): MicruX is on the move again! This summer, we are thrilled to announce our participation in the 76th Annual Meeting of the International Society of Electrochemistry (ISE 2025), taking place in the vibrant city of Mainz, Germany, from 7 to 12 August 2025. This prestigious event is one of the most important global gatherings for electrochemists, attracting scientists, engineers, and industry leaders from around the world . - [⭐ Summer End Offers and Events – August 2025](https://www.micruxfluidic.com/summer-end-offers-and-events-august-2025/) - [📢 Upcoming Event ISE 2025 – July 2025](https://www.micruxfluidic.com/202507-upcoming-event-ise-2025-july-2025/) - [🎉 Free Electrode Samples This Summer! – June 2025](https://www.micruxfluidic.com/202506-free-electrode-samples-june-2025/) - [Thin-film Electrochemical Sensors – May 2025](https://www.micruxfluidic.com/202505-thin-film-electrochemical-sensors-may-2025/) - [Upcoming event: Biosensors 2025 (19-22 May 2025, Lisbon, PORTUGAL)](https://www.micruxfluidic.com/upcoming-event-biosensors-2025/): MicruX is excited to announce our participation in the 35th Anniversary World Congress on Biosensors, taking place in Lisbon, Portugal, from May 19 to 22, 2025 . - [Upcoming Event Biosensors 2025 – April 2025](https://www.micruxfluidic.com/202504-biosensors-2025-april-2025/) - [New Gold Printed Dual Electrodes – March 2025](https://www.micruxfluidic.com/202503-new-dual-gold-printed-electrodes-march-2025/) - [New Gold-based Screen-printed Dual Electrodes – Now Available!](https://www.micruxfluidic.com/new-gold-based-screen-printed-dual-electrodes/): We are excited to continue introducing new innovations this year! MicruX is pleased to announce the expansion of our screen-printed dual electrodes (D2PE) line, now available in gold in addition to our high-performance carbon version. - [New ECSens Bipotentiostat – February 2025](https://www.micruxfluidic.com/202502-new-ecsens-bipotentiostat-february-2025/) - [A Year of Growth and Innovation at MICRUX!](https://www.micruxfluidic.com/a-year-of-growth-and-innovation-at-micrux/): As we welcome 2025, we want to take a moment to reflect on an incredible year of growth and innovation at MicruX Technologies. Over the past year, we have made significant strides in expanding our capabilities, allowing us to better serve our customers and advance our research and development projects. - [» 2024 – 2026 :: Research on New Technologies for Integration of Pressure Sensitive Adhesives in Additive Manufacturing Processes for Microfluidic Systems – PSAFLUID (SEKUENS IDE/2024/000453)](https://www.micruxfluidic.com/psafluid-sekuens-ide-2024-000453_en/): The research project "Research on New Technologies for Integration of Pressure Sensitive Adhesives in Additive Manufacturing Processes for Microfluidic Systems (PSAFLUID)" carried out by MICRUX FLUIDIC S.L. during the years 2024 - 2026 has been funded by SEKUENS. - [New Mediated Carbon Printed Electrodes – January 2025](https://www.micruxfluidic.com/202501-new-mediated-carbon-printed-electrodes-january-2025/) - [Upcoming event: 38th ISE Topical Meeting (8-11 September 2024, Manchester, UK)](https://www.micruxfluidic.com/upcoming-event-38th-ise/): MicruX is thrilled to announce our participation as an exhibitor at the 38th Topical Meeting of the International Society of Electrochemistry (ISE)! This prestigious event will take place from September 8th to 11th in Manchester, and will focus on the latest breakthroughs in the electrochemistry of materials with nano-scale features . - [Upcoming event: 75th ISE Annual Meeting (18-23 August 2024, Montreal, CANADA)](https://www.micruxfluidic.com/upcoming-event-75th-ise/): MicruX is on the road, actively participating in conferences across the globe! We are excited to announce our participation in the 75th Annual Meeting of the International Society of Electrochemistry (ISE 2024), which will be held in Montreal, Canada, from August 18-23, 2024 . - [Upcoming event: 19th International Conference on Electroanalysis (23-26 July 2024, Ulm, GERMANY)](https://www.micruxfluidic.com/upcoming-event-19th/): MicruX is thrilled to announce its participation as an exhibitor at the 19th International Conference on Electroanalysis (ESEAC 2024), taking place in Ulm, Germany from July 23 to 26, 2024 . - [MicruX Expands Versatility with New ECSens® Potentiostat Interface](https://www.micruxfluidic.com/micrux-expands-versatility/): At MicruX, our core commitment is to empower researchers with highly versatile tools. We strive to optimize your workflow by saving you time, effort, and money. - [Upcoming event: 8th International Conference on Bio-sensing Technology (12-15 May 2024, Seville, SPAIN)](https://www.micruxfluidic.com/upcoming-event-8th/): MicruX is thrilled to announce its participation as an exhibitor at the 8th International Conference on Bio-sensing Technology, taking place in Seville, Spain from May 12 to 15, 2024 . - [Revolutionize Your Research with Custom Electrodes by MicruX](https://www.micruxfluidic.com/revolutionize-your-research/): Are you tired of settling for off-the-shelf electrodes that don't quite meet your experimental needs? Look no further than MicruX for tailor-made electrode solutions that elevate your research to new heights. - [New Product: Thin-film Electrode Cable Connector](https://www.micruxfluidic.com/new-product-thin-film/): After years of meticulous research, development and testing, MicruX is proud to announce the launch of our latest innovation – the Thin-Film Universal Cable Connector! - [Exciting Opportunity: Free Electrode Samples for Researchers!](https://www.micruxfluidic.com/exciting-opportunity-free/): MicruX is thrilled to announce an exclusive opportunity for the scientific community! MicruX is delighted to introduce our latest initiative – the distribution of Free Electrode Samples to empower researchers like you in your pursuit of cutting-edge discoveries. - [15 Years of MICRUX: Innovating Success, Building Tomorrow](https://www.micruxfluidic.com/15-years-of-micrux-innovating/): Celebrating 15 Years of Innovation and Excellence at MicruX! Today marks a significant milestone in our journey, and we want to express our deepest gratitude to our clients, collaborators, and dedicated team members. Your trust has fueled our growth, and together, we've achieved remarkable success. - [Upcoming Event: XVI GEC Meeting (Gijón, Spain, October 22-25, 2023)](https://www.micruxfluidic.com/upcoming-event-xvi-gec/): MicruX sponsors the XVI Spanish Carbon Group (GEC) Meeting to be held in Gijón, Asturias, Spain from October the 22nd to the 25th, 2023. The Spanish Carbon Group (GEC) aims to facilitate the dissemination and exchange of knowledge among various R&D agents derived from the use of coal and carbon materials, especially focusing on aspects related to energy and environmental applications. This conference provides a unique opportunity to stay updated on the latest advances in carbon materials research and to establish new collaborations. - [Introducing the New Mediated Screen-printed Electrodes](https://www.micruxfluidic.com/introducing-the-new-mediated/): While summer is a time for rest and relaxation with family and friends, innovation never takes a break at MicruX. We're thrilled to announce our latest addition to the printing electrodes lineup: the new mediated screen-printed electrodes. - [Upcoming Event: II Meeting of GCTbA (Zaragoza, Spain, June 27-28, 2023)](https://www.micruxfluidic.com/upcoming-event-ii-meeting-of/): MicruX sponsors the II Scientific Meeting of the Specialized Group in (Bio)Analytical Science and Technologies to be held in Zaragoza, Spain, from June 27th to 28th, 2023. This event will be held within the framework of the XXXIX Biennial Meeting of the Spanish Royal Society of Chemistryy (RSEQ), also taking place in Zaragoza from June 25th to 29th, 2023. - [New Graphene-based Screen-printed Electrodes](https://www.micruxfluidic.com/new-graphene-based/): MicruX is excited to announce the availability of our new graphene-based screen-printed electrodes. These electrodes are fabricated on flexible PET and rigid ceramic substrates, offering a low electrical resistance and good scratch resistance. These features make them ideal for use in a wide range of applications, including low-cost chemical sensors and biosensors for field analysis. - [New Year Offers](https://www.micruxfluidic.com/new-year-offers/): In the last year, MicruX products portfolio has been increased with our brand of screen-printed electrodes. This year, MicruX will be empowering this product brand as well as others with new and innovative products and services. - [Empowering the Screen-printed Electrodes Family](https://www.micruxfluidic.com/empowering-the-screen-printed/): MicruX designs and manufactures a wide variety of electrochemical sensors, including screen-printed electrodes. Printed electrodes offer an excellent tool for the development of low-cost chemical sensors and biosensors as well as many other applications. - [Customized Screen-printed Electrodes](https://www.micruxfluidic.com/customized-screen-printed/): MicruX manufacturing services provide an excellent tool for designing and testing a wide variety of customized devices with a very competitive price. These services are already available for the development and manufacture of your own printed electrodes. - [ECSens Potentiostat Multiplexing Capabilities](https://www.micruxfluidic.com/ecsens-potentiostat/): MicruX ECSens® (ref. ECSENS100) is an ultra-compact potentiostat specially designed to use screen-printed electrodes or other sensors available in the market. ECSens® is a first-class entry level potentiostat for basic electrochemical studies, development of biosensors and many other applications. - [New Ultra-compact ECSens Potentiostat](https://www.micruxfluidic.com/new-ultra-compact-ecsens/): February ends with the introduction of a new product, the ECSens ultra-compact potentiostat (ref. ECSENS100)! It is the most compact and affordable electrochemical sensing interface, that has been specially design to use screen-printed electrodes or other sensors available in the market. ECSens is a first-class entry level potentiostat for basic electrochemical studies, development of biosensors and many other applications. - [New Dual Screen-printed Electrodes](https://www.micruxfluidic.com/new-dual-screen-printed/): New year starts with a new product reference of screen-printed electrodes (ref. ED-D2PE-C)!!! They are fabricated by printing technologies on a flexible and high resist PET substrate. These low-cost and disposable electrochemical sensors enable the use of small sample volumes as well as multiplexing applications. The dual screen-printed electrode consists of planar dual-working electrodes suitable for simultaneous detection sharing the reference and auxiliary electrodes. - [Participation in International R&D Programs 2021 – T-CHROMA](https://www.micruxfluidic.com/participation-in-international-6/): The international proposal “TUNABLE CHROMATOGRAPHIC SUPPORTS: TOWARDS REVOLUTIONARY ANALYTICAL SEPARATION DEVICES (T-CHROMA)” submitted by MICRUX FLUIDIC S.L. during the year 2021 has been funded by Government of the Principality of Asturias and FICYT. - [New Syringe Pumps – NE series](https://www.micruxfluidic.com/new-syringe-pumps-ne-series/): MicruX is proud to extend the NE series Syringe Pumps. NE series offers affordable programmable pumps to your sophisticated dispensing and flow control applications. Features include infusion and withdrawal, computer interface and advanced programming options. - [Participation in International R&D Programs 2020 – SYMFAPI](https://www.micruxfluidic.com/participation-in-international-5/): The international proposal “SYsteM for integrated Forensic of APIary products (SYMFAPI)” submitted by MICRUX FLUIDIC S.L. during the year 2020 has been funded by Government of the Principality of Asturias and FICYT. - [Participation in International R&D Programs 2020 – FASTDID](https://www.micruxfluidic.com/participation-in-international-4/): The international proposal “Fast Diagnosis detector and mass screening tool for emerging and re-emerging Infectious Diseases (FASTDID)” submitted by MICRUX FLUIDIC S.L. during the year 2020 has been funded by Government of the Principality of Asturias and FICYT. - [Participation in International R&D Programs 2020 – PoCMICRUX](https://www.micruxfluidic.com/participation-in-international-3/): The international proposal “An affordable Multi-Analyte Point-of-Care system for chronic diseases Self-Control and Management (PoCMICRUX)” submitted by MICRUX FLUIDIC S.L. during the year 2019 has been funded by Government of the Principality of Asturias and FICYT. - [Cyber MONDAY 2020](https://www.micruxfluidic.com/cyber-monday-2020/): BLACK FRIDAY is ending, but don't worry, CYBER MONDAY is coming up…. - [Black Friday 2020](https://www.micruxfluidic.com/black-friday-2020/): BLACK FRIDAY is on MicruX, and this year, we are bringing something special for you. This year, MicruX has available exclusive offers, but not, just the Friday, also the entire week from 23 to 27 of November, 2020. One Week MEGA SALE!!! - [Multiplexed Electrode Chips](https://www.micruxfluidic.com/multiplexed-electrode-chips/): MicruX has wide experience in the design and fabrication of thin-film electrodes. Thus, MicruX provides a wide variety of designs adapted to multiple electroanalytical applications. In this sense, a multiplexed detection system is currently very useful in the development of novel applications for environmental, food and health field. ## Pages - [Customers](https://www.micruxfluidic.com/customers/): UNIOVI ICN2 UCO UAM CNRS INQUISAL UAH URV NCL PAN UIB UCLM University of Tasmania UNICAN TTU UFG UCM Harvard University MIT UAB CECRI DCU R.N. Adams Institute IRTA ULL UNIFI UA Universidad VIU IBP UM CNM-IMB VUB Université Bordeaux U. Leeds UR IMTECH CSIRO FIU TMD MUNI Southern University Bath University Oxford University University of Wollongong C-CAMP KIST Pacific University Yildiz Technical Institute Toronto University UFMS IMBG HES-SO Universidad de los Andes Bilkent University Chimie Paristech CIBER.BBN ELKE UMASS Imperial College Fraunhofer Strath Glasgow UMEA UNISA Guru Jambheshwar University Univesité de Nantes Georgia Tech Palacky University Uni Basel TCD Silesian University of Technology UNI PECS UNISA Curtin University University Strasbourg Sabanci Universitesi EMPA Durham University University of Bayreuth Potsdam University Uppsala University Gdansk University ISGlobal CNR-IIA ETH Indiana University Universiteit Twente Slovak Academy of Sciences University of Zagreb INRS Telethon Institute of Genetics and Medicine Amity University King Saud University University of Pardubice University of Helsinki Ruhr Universität Bochum Asian Institute of Technology Universität Tübingen AIMEN University of New South Wales University Linz Israel Institute for Biological Research TU Wildau Tokyo University of Agriculture and Technology TU Delft Universidad de Santiago de Compostela IBA Heiligenstadt ENS de Cachan Aarhus University Hospital IIT Delhi University of Cincinnati La Trobe University University of Copenhagen Universite de Geneve UNIVERSITA DEGLI STUDI CATANIA DTU Nanotech University of Business and Technology Institut des Sciences Analytiques IIT Madras University of Ulster University of Groningen Linköping University KU Leuven IIT Bombay Cardiff University Technische Universiteit Eindhoven University of Calabria Universität Münster UNIVERSITA' STUDI UDINE University of Maryland Baltimore County Georgian Technical University Universidad Nacional de Rio Cuarto Lund University Central Electronics Engineering Research Institute City University of Hong Kong University of Tartu University of Illinois Malaya University Universidad de Sevilla University of Wisconsin-Madison Boston College University of California - San Diego Universitetet i Oslo University of Perugia Robert Gordon University RMIT University Waseda University Universidad Politecnica de Valencia Ben-Gurion University Johns Hopkins University Iowa State University Otto-von-Guericke-University Magdeburg Institute for Basic Science Vall d'Hebron Institut de Recerca Aarhus University Universitat Politécnica de Catalunya Sao Paulo State University Université Pierre et Marie Curie University of Turku CSIC Universite de Lille The University of Queensland Nanyang Technological University National Institute of Technology Hardvard Wyss Institute Colorado State University Ecole Polytechnique Federale de Lausanne Pontificia Universidad Católica de Valparaíso University of Illinois at Chicago University of Virginia University of Bristol Utrecht University Hongik University Lancaster University Albert-Ludwigs-Universität Freiburg Georg-August-Universität Göttingen The University of Hong Kong Universidad de Navarra AIT Austrian Institute of Technology GmbH Cornell University New York University University of Chemistry and Technology National University Singapore Australian National University University of Auckland King’s College London Universidad Carlos III de Madrid University of Wurzburg Universidad Nacional de Cuyo Université de Rennes University of Columbia University of Houston University of Erlangen TU Wien Universidad de Buenos Aires Queen's University Belfast University of Lincoln Kasetsart University Brown University DE MONTFORT UNIVERSITY Slovenská technická univerzita v Bratislave San Jose State University Bowling Green State University Universitá di Pisa Institute for Bioengineering of Catalonia National Research Council Canada Macquarie University Rutgers University Universidad Politécnica de Madrid University of Puerto Rico at Mayagüez UCLA University of Technology Sydney Louisiana State University Slovenská chemická spoločnosť Naval Research Lab Czech Technical University in Prague Czech Academy of Science University Southern California Universidad de Málaga University of Arizona Leibniz-Institut für Oberflächenmodifizierung Institute of Technology Tallaght Kungliga Tekniska Högskolan University of Montreal National Institute of Materials Physics Vidyasirimedhi Institute Abo Akademi University NC State University The University of Aberdeen Institute of Space Science & Technology Korea Institute of Science and Technology Technische Universitaet Dresden University of Dundee University of Saskatchewan University of Antwerp Universita degli studi di Padova Universitat Barcelona Tel Aviv University Hogeschool Rotterdam University of Minnesota University Hospital of Würzburg The University of Edinburgh Northwestern University Instituto Tecnológico de la Energía Tokyo University of Marine Science and Technology California Institute of Technology Université de Montpellier University of the Free State Hamburg University of Technology The State University of New York Birla Institute of Technology and Science Humboldt Universität zu Berlin Universidade de Coimbra Universidad de Valladolid University College London Southern University of Science and Technology George Mason University Kochi University University hospital Hamburg-Eppendorf University College of Dublin University of Connecticut Health Center Vellore Institute of Technology Fundación para la investigación del Hospital Universitario y Politécnico La Fe de la CCVV Middlesex University Pavol Jozef Šafárik University University of Applied Sciences Mittelhessen Ioffe Institute Monash University Universidad Internacional de la Rioja University of New Hampshire - [Cookie Policy (EU)](https://www.micruxfluidic.com/cookie-policy-eu/): Note: This Cookie Policy is for informational purposes only. Applicable to citizens and permanent legal residents of the European Economic Area and Switzerland. - [Shipping](https://www.micruxfluidic.com/shipping/): MicruX ships worldwide the products purchased through its online shop www.micruxfluidic.com. - [Privacy Policy](https://www.micruxfluidic.com/privacy-policy/): In compliance with the obligations established in Organic Law 3/2018, of December 5, on the Protection of Personal Data and Guarantee of Digital Rights, the following information regarding the processing of your personal data is provided: - [Returns and refunds policy](https://www.micruxfluidic.com/returns-and-refunds-policy/): Thanks for shopping at MicruX. We strive to ensure all our products are of the highest quality, but we understand you may not be completely satisfied with your purchase. If that’s the case, we’re here to help. - [Legal Notice](https://www.micruxfluidic.com/legal-notice/): Note: this Legal Notice is for informational purposes only. Should there be any contradiction, the Spanish version shall prevail against the English version. - [Publications](https://www.micruxfluidic.com/support/publications/): List of Publications - [Application Notes](https://www.micruxfluidic.com/support/application-notes/): Different examples of the application of these novel solutions are included in this section. Other many applications can be developed with the products brand provided by MicruX Technologies. - [Microfluidic Manufacturing](https://www.micruxfluidic.com/custom-solutions/microfluidic-manufacturing/): These molds ensure high precision in replicating intricate designs, making them ideal for various microfluidic applications. - [Printed Electrodes Manufacturing](https://www.micruxfluidic.com/custom-solutions/printed-electrodes-manufacturing/): At MicruX , we specialize in the manufacturing of high-quality printed electrodes using advanced screen-printing techniques. Our printed electrodes provide affordable solutions with excellent performance and flexibility for multiple applications. - [Thin-film Electrodes Manufacturing](https://www.micruxfluidic.com/custom-solutions/thin-film-electrodes-manufacturing/): MicruX excels in the design and manufacturing of thin-film electrodes tailored to your specific needs. In addition, MicruX offers a wide range of pre-designed electrodes on demand. - [Custom Solutions](https://www.micruxfluidic.com/custom-solutions/): We leverage advanced technologies and years of experience to deliver high-quality custom solutions. Our team is dedicated to meeting your specific needs with precision and efficiency. - [What we do](https://www.micruxfluidic.com/about-us/what-we-do/): These miniaturized devices enable the separation, detection, identification, and quantification of analytically relevant compounds in real samples. These new devices are useful at both research and industrial levels for developing applications in the agri-food, environmental, and healthcare sectors. - [About Us](https://www.micruxfluidic.com/about-us/): This company emerged from a collaboration between two research groups at the University of Oviedo (Asturias, SPAIN): the Immunoelectroanalysis Group, led by Professor Agustin Costa-García (Department of Physical and Analytical Chemistry) and the Optoelectronics Group led by Professor Jose Rodríguez-García (Department of Physics). - [Dealers](https://www.micruxfluidic.com/contact/dealers/): 28.3044,39.3716 - [Work with us](https://www.micruxfluidic.com/contact/work-with-us/): Contact Us - [Contact Us](https://www.micruxfluidic.com/contact/contact-us/): Contact Us - [FAQ](https://www.micruxfluidic.com/support/faq/): The current trend toward miniaturization, simplification, and automation of analysis systems has led to the emergence of the so-called Lab-on-a-Chip (LOC) or Total Analysis MicroSystems (µTAS). - [R & D](https://www.micruxfluidic.com/support/r-d/) - [Links of interest](https://www.micruxfluidic.com/support/links-of-interest/): uniovi.es - [Team](https://www.micruxfluidic.com/about-us/team/): MicruX is composed of a multidisciplinary team of highly skilled professionals with expertise in the fields of microfluidics and electrochemistry. - [My account](https://www.micruxfluidic.com/my-account/): A link to set a new password will be sent to your email address. - [Checkout](https://www.micruxfluidic.com/checkout/) - [Cart](https://www.micruxfluidic.com/cart/): Your cart is currently empty. Return to shop - [Shop](https://www.micruxfluidic.com/shop/) - [Contact](https://www.micruxfluidic.com/contact/): Contact Us - [Support](https://www.micruxfluidic.com/support/): At MicruX Technologies, our dedicated team works hard to support the success of our customers' research and development projects. - [Home](https://www.micruxfluidic.com/): Smart Microfluidic and Electrochemical Solutions ## Publicaciones - [537-1](https://www.micruxfluidic.com/publicacion/537-1/): E. Boselli, Z. Wu, E. N. Haynes, I. Papautsky. Screen-Printed Sensors Modified with Nafion and Mesoporous Carbon for Electrochemical Detection of Lead in Blood. Journal of The Electrochemical Society, 2024, 171. - [527-1](https://www.micruxfluidic.com/publicacion/527-1/): W. Li, M. J. Lefferts, Y. Wang, A. M. Lister, A. Forssberg, R. Chen, L. Wang, M. R. Castell. Chemiresistive polymer percolation network gas sensor created with a nanosphere template. Adv. Mater. Interfaces. 2023, 10, 2202042. - [521-1](https://www.micruxfluidic.com/publicacion/521-1/): M.H. Hassan, A. M. Omar, E. Daskalakis, A. A. Mohamed, L. A. Boyd, C. Blanford, B. Grieve, P.JDS. Bartolo. Multi-Layer Biosensor for Pre-Symptomatic Detection of Puccinia strifformis, the Causal Agent of Yellow Rust. Biosensors. 2022, 12, 829. - [535-1](https://www.micruxfluidic.com/publicacion/535-1/): H. M. N. Ahmad , A. Andrade, E. Song. Continuous Real-Time Detection of Serotonin using Aptamer-Based Electrochemical Biosensor. ChemRxiv. Cambridge: Cambridge Open Engage; 2023. - [519-1](https://www.micruxfluidic.com/publicacion/519-1/): Reema Rawat, Souradeep Roy, Tapas Goswami, Ashish Mathur. An Electroanalytical Flexible Biosensor Based on Reduced Graphene Oxide-DNA Hybrids for the Early Detection of Human Papillomavirus-16. Diagnostics. 2022, 12, 2087. - [547-1](https://www.micruxfluidic.com/publicacion/547-1/): P. Rioboó-Legaspi, E. Costa-Rama, M. T. Fernández-Abedul. ElectrochemCap: an integrated detection for loop-mediated isothermal amplification reactions. Lab Chip, 2024, 24, 4085 - [543-1](https://www.micruxfluidic.com/publicacion/543-1/): Tirado Cantu, P., Alcantar Peña, J., Cruz Zabalegui, A. et al. Simultaneous pH and glucose sensing and its relation in a non-enzymatic glucose sensor. MRS Communications. 2024. 14, 96–102. - [541-1](https://www.micruxfluidic.com/publicacion/541-1/): A. Pérez Roig , B. Ibarlucea, C. Amaro, Gianaurelio Cuniberti. Vibrio vulnificus marine pathogen detection with thin-film impedance biosensors. Biosensors and Biolectronics. 2024. X 17, 100454. - [539-1](https://www.micruxfluidic.com/publicacion/539-1/): P. Portugal-Gómez, O. Domínguez-Renedo, M. A. Alonso-Lomillo. Gel polymer electrolyte-based dual screen-printed electrodes for the headspace quantification of 4-ethylphenol and ethanethiol simultaneously in wines. Microchimica Acta. 2024. 191-208. - [525-1](https://www.micruxfluidic.com/publicacion/525-1/): Dotan, T., Jog, A., Kadan-Jamal, K., Avni, A., Shacham-Diamand, Y. In Vivo Plant Bio-Electrochemical Sensor Using Redox Cycling. Biosensors. 2023, 13, 219 - [513-1](https://www.micruxfluidic.com/publicacion/513-1/): Yuetong Zhou, Shuai Zhang, Mark A. Buckingham, Leigh Aldous, Stephen Beirne, Chang Wu, Yuqing Liu, Gordon Wallace, Jun Chen. Novel porous thermosensitive gel electrolytes for wearable thermo-electrochemical cells. Chemical Engineering Journal. 2022,449, 137775. - [529-1](https://www.micruxfluidic.com/publicacion/529-1/): Alessia Calabrese, Pietro Battistoni, Seniz Ceylan, Luigi Zeni, Alessandro Capo, Antonio Varriale, Sabato D’Auria, Maria Staiano. An Impedimetric Biosensor for Detection of Volatile Organic Compounds in Food.Biosensors 2023,13, 341. - [517-1](https://www.micruxfluidic.com/publicacion/517-1/): A. Mathur, S.Roy, S. Nagabooshanam, S. Wadhwa d, S. Dubey. Effect of gap size of gold interdigitated electrodes on the electrochemical immunosensing of cardiac troponin-I for point-of-care applications. Sensors and Actuators Reports. 2022, 4, 100114. - [523-1](https://www.micruxfluidic.com/publicacion/523-1/): Alejandro Rodríguez-Penedo, Pablo Rioboó-Legaspi, Andrea González-López,Ana Lores-Padín, Rosario Pereiro, María del Mar García-Suárez,María Dolores Cima-Cabal, Estefanía Costa-Rama, Beatriz Fernández, M. Teresa Fernández-Abedul. Electrocatalytic Palladium Nanoclusters as Versatile Indicators of Bioassays: Rapid Electroanalytical Detection of SARS-CoV-2 by Reverse Transcription Loop-Mediated Isothermal Amplification. Advanced Healthcare Materials. 2023. - [545-1](https://www.micruxfluidic.com/publicacion/545-1/): :: Tag: electrochemical sensor - [515-1](https://www.micruxfluidic.com/publicacion/515-1/): Arun S. Babal, Samraj Mollick, Waqas Kamal, Steve Elston, Alfonso A. Castrejón-Pita, Stephen M. Morris,b and Jin-Chong Tan. Nano-Trap Engineering in MOF Microenvironment for Ultratrace Iodine Sensors. arXiv:2202.10556. 2022 - [531-1](https://www.micruxfluidic.com/publicacion/531-1/): N. Haghighian, R. Kataky. Rapid fingerprinting of bacterial species using nanocavities created on screen-printed electrodes modified by β-cyclodextrin. Sensors & Diagnostics. 2023. - [533-1](https://www.micruxfluidic.com/publicacion/533-1/): Calabrese, A.; Capo, A.; Capaccio, A.; Agovino, E.; Varriale, A.; Pascale, M.; D’Auria, S.; Staiano, M. An Impedance-Based Immunosensor for the Detection of Ovalbumin in White Wine. Biosensors, 2023, 13, 669. - [477-1](https://www.micruxfluidic.com/publicacion/477-1/): Maxwell T. Robinson, Julie Tung, Meysam Heydari Gharahcheshmeh, Karen K. Gleason, "Humidity-Initiated Gas Sensors for Volatile Organic Compounds Sensing". Advance Functional Materials, 2021, 31 (22), 2101310. - [491-1](https://www.micruxfluidic.com/publicacion/491-1/): Mikhail Karushev , Evgenia Smirnova and Irina Chepurnaya. "Nickel(II) Complex of N4 Schiff Base Ligand as a Building Block for a Conducting Metallopolymer with Multiple Redox States". Molecules, 2021, 26, 2646. - [483-1](https://www.micruxfluidic.com/publicacion/483-1/): Morad Zouheir, Trung-Anh Le, Dr. Janno Torop, Dr. Kostiantyn Nikiforow, Dr. Muhammad Khatib, Orr Zohar, Prof. Hossam Haick, Dr. Tan-Phat Huyn, "CuS-Carrageenan Composite Grown from the Gel/Liquid Interface". Chemistry System Chem, 2021, 3 (4), e2000063. - [495-1](https://www.micruxfluidic.com/publicacion/495-1/): Ciril Reiner-Rozman, Roger Hasler, Jakob Andersson, Teresa Rodrigues, Anil Bozdogan, Johannes Bintinger, Patrik Aspermair. "The top performer: Towards optimized parameters for reduced graphene oxide uniformity by spin coating". Micro Nano Lett., 2021;1–7. - [503-1](https://www.micruxfluidic.com/publicacion/503-1/): Ina Turcan, Iuliana Caras, Thomas Gabriel Schreiner, Catalin Tucureanu, Aurora Salageanu, Valentin Vasile, Marioara Avram, Bianca Tincu, Marius Andrei Olariu. "Dielectrophoretic and Electrical Impedance Differentiation of Cancerous Cells Based on Biophysical Phenotype".Biosensors, 2021, 11, 401.  - [479-1](https://www.micruxfluidic.com/publicacion/479-1/): Rodrigues T, Mishyn V, Bozdogan A, Leroux, Y.R., Happy H, Kasry A, Boukherroub R, Dostalek J, Aspermair P, Bintinger J, Kleber C, Szunerits S and Knoll W. "On the Detection of cTnI - A Comparison of Surface-Plasmon Optical -, Electrochemical -, and Electronic Sensing Concepts". Annals of Clinical and Medical Case Reports, 2021, 6. - [481-1](https://www.micruxfluidic.com/publicacion/481-1/): Matthew D. Yates, Lina J. Bird, Brian J. Eddie, Elizabeth L. Onderko, Christopher A. Voigt, Sarah M. Glaven. "Nanoliter scale electrochemistry of natural and engineered electroactive bacteria". Bioelectrochemistry, 2021, 137, 107644. - [501-1](https://www.micruxfluidic.com/publicacion/501-1/): Merel J. Lefferts, Ben I. Armitage, Krishnan Murugappan, Martin R. Castell. "PEDOT percolation networks for reversible chemiresistive sensing of NO2". RSC Adv., 2021, 11, 22789. - [493-1](https://www.micruxfluidic.com/publicacion/493-1/): Nitzan Shauloff, Ahiud Morag, Karin Yaniv, Seema Singh, Ravit Malishev, Ofra Paz-Tal, Lior Rokach, Raz Jelinek. "Sniffing Bacteria with a Carbon-Dot Artificial Nose". Nano-Micro Lett., 2021, 13:112. - [471-1](https://www.micruxfluidic.com/publicacion/471-1/): Elena Boselli, Zhizhen Wu, Alexa Friedman, Birgit Claus Henn, and Ian Papautsky. "Validation of Electrochemical Sensor for Determination of Manganese in Drinking Water". Environ. Sci. Technol., 2021, 55, 11, 7501–7509. - [497-1](https://www.micruxfluidic.com/publicacion/497-1/): Patrik Aspermair, Vladyslav Mishyn, Johannes Bintinger, Henri Happy, Komal Bagga, Palaniappan Subramanian, Wolfgang Knoll, Rabah Boukherroub, Sabine Szunerits. "Reduced graphene oxide–based field effect transistors for the detection of E7 protein of human papillomavirus in saliva". Analytical and Bioanalytical Chemistry, 2021, 413:779–787. - [469-1](https://www.micruxfluidic.com/publicacion/469-1/): Rodrigues T, Mishyn V, Bozdogan A, Leroux, Y.R., Happy H, Kasry A, Boukherroub R, Dostalek J, Aspermair P, Bintinger J, Kleber C, Szunerits S and Knoll W. “On the Detection of cTnI - A Comparison of Surface-Plasmon Optical -, Electrochemical -, and Electronic Sensing Concepts”. Ann Clin Med Case Rep, 2021, 6(2), 1-16. - [487-1](https://www.micruxfluidic.com/publicacion/487-1/): Alexander Rodríguez, Francisco Burgos-Flórez, José D. Posada, Eliana Cervera, Valtencir Zucolotto, Homero Sanjuán, Marco Sanjuán and Pedro J. Villalba. "Electrochemical Immunosensor for the Quantification of S100B at Clinically Relevant Levels Using a Cysteamine Modified Surface". Sensors, 2021, 21, 1929. - [507-1](https://www.micruxfluidic.com/publicacion/507-1/): Gonzalo E. Fenoy, Waldemar A. Marmisollé, Wolfgang Knoll, Omar Azzaroni. Highly sensitive urine glucose detection by graphene field-effect transistors functionalized with electropolymerized nanofilms. Sensors & Diagnostic. 2022. - [473-1](https://www.micruxfluidic.com/publicacion/473-1/): Ziyue Li, Xiong Ding, Kun Yin, Zhiheng Xu, Kumarasen Cooper, Changchun Liu, “Electric field-enhanced electrochemical CRISPR biosensor for DNA detection”. Biosensors and Bioelectronics, 2021, 192, 113498. - [485-1](https://www.micruxfluidic.com/publicacion/485-1/): Nhlakanipho Mkhize, Krishnan Murugappan, Martin R Castell and Harish Bhaskaran. "Electrohydrodynamic jet printed conducting polymer for enhanced chemiresistive gas sensors". J. Mater. Chem. C, 2021, 9, 459. - [475-1](https://www.micruxfluidic.com/publicacion/475-1/): Lisa Mayerhuber, Stephan Trattner, Sebastian Luger, Gabriele Weigelhofer, Christian Hametner, Philipp Fruhmann. “Development of ion-selective electrodes for antipyrine and its derivatives as potential tool for environmental water monitoring”. Journal of Electroanalytical Chemistry, 2021, 886, 115110. - [505-1](https://www.micruxfluidic.com/publicacion/505-1/): A. Heidarian, S. C.P. Cheung, R. Ojha, G. Rosengarten. Effects of current collector shape and configuration on charge percolation and electric conductivity of slurry electrodes for electrochemical systems. Energy. 2022, 239, 122313. - [499-1](https://www.micruxfluidic.com/publicacion/499-1/): Mikhail Karushev. "A Novel Cobalt Metallopolymer with Redox-Matched Conjugated Organic Backbone via Electropolymerization of a Readily Available N4 Cobalt Complex". Polymers, 2021, 13, 1667. - [509-1](https://www.micruxfluidic.com/publicacion/509-1/): Ziyue Li, Xiong Ding, Kun Yin, Zhiheng Xu, Kumarasen Cooper, Changchun Liu. Electric field-enhanced electrochemical CRISPR biosensor for DNA detection. Biosensors and Bioelectronics, 2021, 192. 113498. - [447-1](https://www.micruxfluidic.com/publicacion/447-1/): Joonsik Seo, Mohammed Iqbal Khazi, Jong-Man Kim. "Highly responsive triethylamine vapor sensor based on a perylene diimide-polydiacetylene system via heat-induced tuning of the molecular packing approach". Sensors and Actuators B: Chemical, 2021, 334, 129660. - [435-1](https://www.micruxfluidic.com/publicacion/435-1/): Francesco Bellando, Leandro Julian Mele, Pierpaolo Palestri, Junrui Zhang, Adrian Mihai Ionescu, Luca Selmi. "Sensitivity, Noise and Resolution in a BEOL-Modified Foundry-Made ISFET with Miniaturized Reference Electrode for Wearable Point-of-Care Applications". Sensors, 2021, 21, 1779. - [445-1](https://www.micruxfluidic.com/publicacion/445-1/): Do Wan Kim, Ki Hong Park, Seung-Hoon Lee, Cristian Fàbrega, J. Daniel Prades, Jae-Won Jang. "Plasmon expedited response time and enhanced response in gold nanoparticles-decorated zinc oxide nanowire-based nitrogen dioxide gas sensor at room temperature". Journal of Colloid and Interface Science, 2021, 582, Part B, 658-668. - [437-1](https://www.micruxfluidic.com/publicacion/437-1/): Cristian Zanetti, Sarah Spitz, Emanuel Berger, Silvia Bolognin, Lisa M. Smits, Philipp Crepaz, Mario Rothbauer, Julie M. Rosser, Martina Marchetti-Deschmann, Jens C. Schwamborn, Peter Ertl. "Monitoring the neurotransmitter release of human midbrain organoids using a redox cycling microsensor as a novel tool for personalized Parkinson’s disease modelling and drug screening". Analyst, 2021. - [439-1](https://www.micruxfluidic.com/publicacion/439-1/): Jana Hovancová, Veronika Nišcáková, Ivana Šišoláková, Renáta Orinaková, Iveta Maskalová, Andrej Orinak, Karol Koval."Gold Microelectrodes Decorated by Spike-Like Nanostructures as a Promising Non-Enzymatic Glucose Sensor". Electroanalysis, 2021, 33, 347 –354. - [443-1](https://www.micruxfluidic.com/publicacion/443-1/): Lisa Mayerhuber, Stephan Trattner, Sebastian Luger, Gabriele Weigelhofer, Christian Hametner, Philipp Fruhmann. "Development of ion-selective electrodes for antipyrine and its derivatives as potential tool for environmental water monitoring". Journal of Electroanalytical Chemistry, 2021, 886, 115110. - [467-1](https://www.micruxfluidic.com/publicacion/467-1/): Jan Klouda, Lenka Benesova, Pavel Kocovský, Karolina Schwarzova-Peckova. "Voltammetry of 7-dehydrocholesterol as a new and useful tool for Smith-Lemli-Opitz syndrome diagnosis". Talanta, 2021, 122260.  - [433-1](https://www.micruxfluidic.com/publicacion/433-1/): Merel J. Lefferts, Lisa H. Humphreys, Nathalie Mai, Krishnan Murugappan, Ben I. Armitage, Jean-François Pons, Martin R. Castell. "ANFO vapour detection with conducting polymerpercolation network sensors and GC/MS". Analyst, 2021. - [463-1](https://www.micruxfluidic.com/publicacion/463-1/): Lorenzo Travaglini, Adam P. Micolich, Claudio Cazorla, Erica Zeglio, Antonio Lauto, and Damia Mawad. "Single-Material OECT-Based Flexible Complementary Circuits Featuring Polyaniline in Both Conducting Channels". Adv. Funct. Mater. 2021, 31, 2007205. - [429-1](https://www.micruxfluidic.com/publicacion/429-1/): Morad Zouheir, Mohammed Zniber, Syeda Qudsia, Tan-Phat Huynh. "Real-time humidity sensing by integration of copper sulfidenanocomposite with low-cost and wireless Arduino platform". Sensors and Actuators A , 2021, 319, 112541. - [461-1](https://www.micruxfluidic.com/publicacion/461-1/): Xihu Wu, Qian Liu, Abhijith Surendran, Steven E. Bottle, Prashant Sonar, and Wei Lin Leong. "Enhancing the Electrochemical Doping Efficiency in Diketopyrrolopyrrole-Based Polymer for Organic Electrochemical Transistors". Adv. Electron. Mater. 2021, 7, 2000701. - [465-1](https://www.micruxfluidic.com/publicacion/465-1/): Tiina M. Sikanen, Iiro Kiiski and Elisa Ollikainen. "Chapter 3. Microfluidic Analysis Techniques for Safety Assessment of Pharmaceutical Nano- and Microsystems". Characterization of Pharmaceutical Nano- and Microsystems, 2021. ## Products - [Custom payment](https://www.micruxfluidic.com/product/custom-payment/) - [Single Electrodes (SE)](https://www.micruxfluidic.com/product/single-electrode-se/): Metal-based Single Electrodes (SE) are fabricated using thin-film technologies on a glass substrate. Basic three-electrodes approach: working electrode (WE), reference electrode (RE), and auxiliary electrode (AE). Suitable for electroanalysis, flow systems, nanotechnology, and biosensor development. High precision and resolution. - [Interdigitated Electrodes (IDE)](https://www.micruxfluidic.com/product/interdigitated-electrodes-ide/): Metal-based Interdigitated Electrodes (IDE) are fabricated using thin-film technologies on a glass substrate. Two individually addressable strips of microelectrode arrays with an interdigitated design. Special circular cell design to achieve better sample drop adaptation. Suitable for impedance, capacitance, and conductivity measurements, as well as fuel cells. - [Interdigitated Microelectrode Array (IDA)](https://www.micruxfluidic.com/product/interdigitated-microelectrodes-array-ida/): Metal-based Interdigitated Microelectrodes Arrays (IDA) are fabricated using thin-film technologies on a glass substrate. Four-electrodes approach: two interdigitated WEs with RE and AE fully integrated. IDA electrodes can be used in single- or dual-mode, which enhances microelectrode behavior, improving sensitivity and detection limits. High resolution and precision. - [Interdigitated Ring Array (IDRA)](https://www.micruxfluidic.com/product/interdigitated-ring-array-idra/): Metal-based Interdigitated Ring Arrays (IDRA) are fabricated using thin-film technologies on a glass substrate. Four-electrode configuration featuring two radial arrays of interdigitated working microelectrodes. IDRA electrodes can be used in single- or dual-mode. Specifically designed for use in flow systems. - [Single Electrodes (S1PE)](https://www.micruxfluidic.com/product/single-electrodes-s1pe/): Screen-printed single electrodes (S1PE) are fabricated on either a flexible, high-resistivity PET substrate or a rigid ceramic substrate. Classical three-electrode approach: working electrode (WE), reference electrode (RE), and auxiliary electrode (AE). Cost-effective solution suitable for electroanalysis, flow systems, nanotechnology, and biosensor development. Low sample volume required. - [Mediated Single Electrodes (S1PE)](https://www.micruxfluidic.com/product/mediated-single-electrodes-s1pe/): Meadiated screen-printed single electrodes (S1PE) are fabricated on a flexible, high-resistivity PET substrate . The working electrode (WE) includes an electroactive mediator to enhance the detection of specific target analytes. Cost-effective solution suitable for the development of enzymatic biosensors. Requires low sample and reagent volumes. - [Dual Electrodes (D2PE)](https://www.micruxfluidic.com/product/dual-electrodes-d2pe/): Dual screen-printed electrodes (D2PE) are fabricated on a flexible, high-resistivity PET substrate. Four-electrode system: two working electrodes (WE1 / WE2), sharing a reference electrode (RE), and an auxiliary electrode (AE). An affordable solution ideal for developing multiplexed chemical sensors and biosensors. Low sample consumption. - [Drop-cell Connector](https://www.micruxfluidic.com/product/drop-cell-connector/): The Drop-cell connector provides a simple and robust interface for connecting thin-film electrodes to the potentiostat. Easy-to-use platform for standard thin-film (micro)electrodes. Enables batch analysis with sample drops of 1 - 10 µL. User-friendly, tool-free assembly. Easy and fast replacement of the electrodes. The Drop-cell platform includes a universal cable compatible with any commercial potentiostat. The cable is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). GENERAL SPECIFICATIONS » Dimensions (W x D x H) 40 x 30 x 25 mm » Material Aluminum (base) + methacrylate (cover) » Compatibility Thin-film electrodes 10 x 6 x 0.7 mm » Content Platform + cable (select male or female plug) - [All-In-One Platform](https://www.micruxfluidic.com/product/all-in-one-platform/): The All-In-One (AIO) platform provides an unique multipurpose interface with interchangeable movable add-ons. The AIO platform enables the use of thin-film (micro)electrodes in both static (Drop/Batch-cell) and dynamic (Flow cell) conditions, fulfilling the requirements of multiple analytical applications. Easy-to-use and robust platform for interfacing the standard thin-film electrodes and instrumentation. Enables the use of microvolume (1 – 10 μL sample drops). Includes the basic assembly parts (with magnets) for the different add-ons Easy and fast replacement of electrodes and add-ons. The AIO platform includes a universal cable compatible with any commercial potentiostat. The cable is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). - [All-In-One Plataform Add-ons](https://www.micruxfluidic.com/product/all-in-one-plataform-add-ons/): Different Add-ons are available for use in combination with the AIO platform and all standard thin-film electrodes, enabling work in various dynamic (flow-cell) or static (batch-cell) conditions. Add-ons are easily attached to the AIO base cell using magnets. Ensures a leak-free seal using O-rings. Easy and fast replacement of electrodes and add-ons. Add-ons are available in different materials: transparent PMMA (standard) or solvent-resistant PEEK (upon request). Choose the option that best suits your experimental needs. AVAILABLE ADD-ONS SKU Material Add-on Compatibility » ED-AIO-ADD-ON-BC-PMMA-5.0 PMMA Batch-cell SE / mSE / IDA / IDRA / IDE » ED-AIO-ADD-ON-FC-PMMA-2.0 PMMA Flow-cell SE / mSE / IDA / IDRA » ED-AIO-ADD-ON-FC-PMMA-3.5 PMMA Flow-cell-IDE IDE » ED-AIO-ADD-ON-BC-PEEK-5.0 PEEK Batch-cell SE / mSE / IDA / IDRA / IDE » ED-AIO-ADD-ON-FC-PEEK-2.0 PEEK Flow-cell SE / mSE / IDA / IDRA » ED-AIO-ADD-ON-FC-PEEK-3.5 PEEK Flow-cell-IDE IDE - [All-In-One SPE Plataform](https://www.micruxfluidic.com/product/all-in-one-spe-plataform/): The All-In-One SPE (AIO-SPE) platform provides an unique multipurpose interface with interchangeable movable add-ons. The AIO platform enables the use of screen-printed electrodes in both static (Drop/Batch-cell) and dynamic (Flow cell) conditions, fuufilling the requirements of multiple analytical applications. Easy-to-use and robust platform for the use of SPEs in dynamic or static conditions. Enables the use of sample volume up to 1 mL. Includes the basic assembly parts (with magnets) for the different add-ons Easy and fast replacement of electrodes and add-ons. The AIO-SPE platform includes a cable (ED-SPE-CABLE) for interfacing the screen-printed electrodes with any commercial potentiostat. The cable is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). - [All-In-One SPE Plataform Add-ons](https://www.micruxfluidic.com/product/all-in-one-spe-plataform-add-ons/): Different Add-ons are available for use in combination with the AIO-SPE platform and all standard screen-printed electrodes (SPE), enabling work in various dynamic (Flow-cell) or static (Batch-cell) conditions to meet the requirements of many electroanalytical applications. Add-ons easily attached to the AIO-SPE base cell using magnets. Ensures leak-free seal using O-rings. Easy and fast replacement of electrodes and add-ons. Currently, add-ons are available in transparent PMMA (standard). Choose the option that best suits your experimental needs. AVAILABLE ADD-ONS SKU Material Add-on Compatibility » ED-AIO-SPE-ADD-ON-BC-PMMA PMMA Batch-cell S1PE / D2PE » ED-AIO-SPE-ADD-ON-FC-PMMA PMMA Flow-cell S1PE / D2PE - [Multi8x All-In-One Platform](https://www.micruxfluidic.com/product/multi8x-all-in-one-platform/): The Multi8x All-In-One (AIO) platform offers a multiplexing interface with interchangeable movable add-ons.  The Multi8x AIO platform enables the use of up to 8 thin-film (micro)electrodes in either static (Drop/Batch cell) or dynamic (Flow cell) mode, enabling a multiplexed detection system for various analytical applications. User-friendly and robust interface for connecting thin-film electrodes to instrumentation. Supports the use of up to 8 standard thin-film electrodes, either individually or simultaneously. Allows for sample volumes of 1 to 10 µL per cell. Includes basic assembly parts (with screws) for various add-ons. Quick and easy replacement of electrodes and add-ons. The AIO Multi8x platform includes a miniUSB box, an IDC connector, and universal cables for individual connection of the 8 cells with any commercial (multi)potentiostat. The cables are available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). - [Multi8x All-In-One Plataform Add-ons](https://www.micruxfluidic.com/product/multi8x-all-in-one-plataform-add-ons/): Different Multi8x Add-ons are available for the simultaneous use of up to eight thin-film electrodes in dynamic (Flow-cell) or static (Batch-cell) conditions. Add-ons attached to the Multi8x AIO base-cell with screws. Ensures a leak-free seal using O-rings. Quick and easy replacement of electrodes and add-ons. Multi8x Add-ons are available in different materials: transparent PMMA (standard) or olvent-resistant PEEK (upon request). Select the option that best suits your experimental needs. AVAILABLE MULTI8x AIO ADD-ONS SKU Material Add-on Compatibility » ED-ADD-ON-8x-BC-PMMA-5.0 PMMA Multi8x Batch-cell SE / mSE / IDA / IDRA / IDE » ED-ADD-ON-8x-FC-PMMA-2.0 PMMA Multi8x Flow-cell SE / mSE / IDA / IDRA » ED-ADD-ON-8x-FC-PMMA-3.5 PMMA Multi8x Flow-cell-IDE IDE » ED-ADD-ON-8x-BC-PEEK-5.0 PEEK Multi8x Batch-cell SE / mSE / IDA / IDRA / IDE » ED-ADD-ON-8x-FC-PEEK-2.0 PEEK Multi8x Flow-cell SE / mSE / IDA / IDRA » ED-ADD-ON-8x-FC-PEEK-3.5 PEEK Multi8x Flow-cell-IDE IDE - [Multi-electrode Chip Platform](https://www.micruxfluidic.com/product/multi-electrode-chip-platform/): The Multi-electrode Chip platform provides a simple and robust interface with a multi-potentiostat, enabling the use of thin-film single and interdigitated multi-electrodes. User-friendly platform for thin-film multi-electrodes (18.5 x 15 mm or 37 x 15 mm). Enables stationary-state assays with sample droplets of 1–5 µL per cell. Tool-free assembly. Quick and easy electrode replacement. The Multi-electrode platform includes two miniUSB boxes, two IDC connectors, and universal cables, enabling up to 48 individual connections with any commercial (multi)potentiostat. The cables are available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). GENERAL SPECIFICATIONS » Dimensions (W x D x H) 70 x 95 x 25 mm » Material Aluminum (base) + methacrylate (cover) » Compatibility Thin-film Multi-Electrodes SE-8x / SE-16x / IDE10-12x / IDE5-12x » Contents Platform + 2x miniUSB boxes + 2x IDC connectors + cables (choose male or female banana ends) - [External Electrode Platform (EEP)](https://www.micruxfluidic.com/product/external-electrode-platform-eep/): The External Electrode Platform (EEP) enables the use of external electrodes with the AIO (or AIO-SPE) platform and Batch-cell add-ons for static measurements. Easily adjustable on the AIO / AIO-SPE platform. Quick and easy accessory replacement. External electrodes are always positioned consistently. The EEP platform includes two accessories to facilitate the positioning of one or two external electrodes, depending on experimental needs. GENERAL SPECIFICATIONS » Dimensions (W x D x H) 70 x 65 x 35 mm » Material PLA » Compatibility AIO / AIO-SPE platform, Batch-cell add-ons, external electrodes (RE-Ag/AgCl, CE-Pt, CE-SS) » Contents EEP platform + 2 accessories for external electrodes - [Replacements for Platforms](https://www.micruxfluidic.com/product/replacements-for-platforms/): Replacement parts for components that may be affected by continuous use are available for the different platforms. miniUSB-AIO-CABLE - Replacement miniUSB cables for the Drop-cell connector and AIO /Multi8x AIO platforms. These cables are available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes alligator clips). PCB-DC/AIO - Replacement PCB used for the AIO platform and Drop-cell connector. PCB-Multi8x-AIO - Replacement PCB for the Multi8x AIO platform. - [SPE Connectors](https://www.micruxfluidic.com/product/spe-connectors/): Various accessories are available for the quick and easy interconnection of screen-printed electrodes (SPE) with the analytical instrumentation. SPE-CABLE - Screen-printed electrodes connector for interfacing the printed electrodes with any potentiostat, enabling the use of microvolumes (sample drops of 20 – 50 μL) or immersion in the solution. The cable is compatible with S1PE and D2PE screen-printed electrodes and is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). SPE-BOX - A small box connector for screen-printed electrodes that acts as an interface between the printed electrodes and any available potentiostat in the laboratory. It allows the use of microvolumes (sample drops of 20 – 50 μL). The connector is compatible with S1PE and D2PE screen-printed electrodes. Dimensions: L58 x W40 x H15 mm SPE-ADAPTOR - An adaptor for 3-pins SPE connectors (from other brands) to interface MicruX screen-printed electrodes, which feature four contact pads. This versatile and cost-effective solution enables the use of our screen-printed electrodes (S1PE) with various commercial connectors. - [Thin-Film Connectors](https://www.micruxfluidic.com/product/thin-film-connectors/): Various accessories are available for the quick and easy interconnection of thin-film electrodes with analytical instrumentation. IDE-CABLE - Connector that acts as an interface between the thin-film interdigitated electrodes (IDE - two contact pads) and any potentiostat, enablingthe use of microvolumes (2–10 μL sample drops) or immersion in a solution. The connector is specifically compatible with interdigitated electrodes (IDE), and is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). TF-CABLE - Connector that acts as a universal interface between all MicruX standard thin-film electrodes (up to four contact pads) and any potentiostat, enabling the use of microvolumes (2–10 μL sample drops) or immersion in solution. The connector is compatible with all standard thin-film electrodes, and is available with two terminal options to better meet the requirements of any instrumentation: 2-mm female banana plugs (includes male adapter). 2-mm male banana plugs (includes crocodile clips). - [ECStat Electochemical Station](https://www.micruxfluidic.com/product/ecstat-electochemical-station/): MicruX ECStat is a USB-powered All-in-One Electrochemical Workstation, including a Bipotentiostat/Galvanostat with a built-in Impedance Analyzer, in a very compact and portable equipment. Dimensions: 160 x 100 x 45 mm (L x W x H) USB-powered / interfacing. Control PC software - MicruX EC Manager. Built-in FRA/EIS Analyzer from 10 μHz to 1 MHz Current ranges: 100 pA to 10 mA (max. current: ± 30 mA) Operating modes: bipotentiostat, potentiostat, ZRA, galvanostat, PEIS analyzer Includes over 25 electroanalytical techniques. Compatible with electrochemical platforms, thin-film electrodes, and SPEs. MicruX ECStat is supplied in a plastic briefcase with all necessary accessories and software for interfacing with the computer and sensors. - [ECSens BIPOT Electrochemical Sensing Interface](https://www.micruxfluidic.com/product/ecsens-bipot-electrochemical-interface/): MicruX ECSens is an ultra-compact and affordable Bipotentiostat, ideal for starting electrochemical studies with the most common electroanalytical techniques, enabling in-situ voltammetric and amperometric analyses. Dimensions: 39 x 17 x 9 mm (L x W x H). USB-powered / interfacing. Control PC software - MicruX EC Manager LITE. Potential range: ± 1.5 V Current ranges: 0.25 µA to 12.5 mA (max current: ± 5 mA). Operating modes: bipotentiostat / potentiostat (multi-channel mode available) Compatible with screen-printed electrodes (SPE). MicruX ECSens is provided with all necessary accessories and software for interfacing with the computer and sensors. - [Device Accessories](https://www.micruxfluidic.com/product/device-accessories/): Replacements and additional accessories are available for the various analytical instruments to better adapt to each user's experimental needs. ECSTAT-CABLE-2mm-M - Bipotentiostat cable with 2-mm male banana plugs (including alligator clips) to be used in combination with MicruX® ECStat for connecting the electrodes of the detection system. ECSTAT-USB-CABLE - Bipotentiostat cable with miniUSB plug, designed for use with MicruX® ECStat to directly connect MicruX® electrochemical platforms with thin-film electrodes. Compatible with the Drop-cell connector and AIO platform. ECSENS-CABLE-2mm-M - Adapter cable with 2-mm male banana plugs (including alligator clips) for use with MicruX® ECSens® to connect any type of electrode to the miniaturized potentiostat. - [External Electrodes](https://www.micruxfluidic.com/product/external-electrodes/): MicruX provides miniaturized reference electrodes (Ag/AgCl) and counter/auxiliary electrodes (Pt or SS) for use with screen-printed and thin-film electrodes, in combination with the AIO / AIO-SPE platform. External electrodes (reference and auxiliary/counter electrodes) offer a useful solution for many electroanalytical applications. - [Syringe Pumps – NE Series](https://www.micruxfluidic.com/product/syringe-pumps-ne-series/): MicruX offers cost-effective solutions for advanced dispensing and flow control applications, providing a diverse range of syringe pumps. Key features include infusion and withdrawal capabilities, computer interfacing, and advanced programming options. Available systems include: » NE-300 Single-Infusion Syringe Pump. A basic, cost-effective pumping system designed for single infusion only—no withdrawal, volume targeting, computer interface, or programmability. Compatible with syringes up to 60 mL, it delivers a maximum flow rate of 20 mL/min, which can be adjusted during operation. » NE-1000 Single-Channel Syringe Pump (infusion / withdrawal). Fully programmable pump family with both infusion and withdrawal modes, compatible with syringes ranging from 1 mL to 60 mL. Infusion rates vary from 0.01 µL/min to 30 mL/min. It can function autonomously or be controlled via a computer, with the capability to program up to 41 pumping phases. » NE-4000 Dual-Channel Syringe Pump (infusion / withdrawal). Programmable dual-syringe pump that can hold two syringes up to 60 mL each,  offering pumping rates from 25 µL/min to 100 mL/min. This pump supports automation, operates independently or via a computer, and allows to program up to 41 pumping phases. » Multi-Channel Syringe Pumps (infusion / withdrawal). Multi-channel models provide full-featured programmable capabilities as the NE-1000. Available in models with six (NE-1600), eight (NE-1800), or twelve (NE-1200) channels, ideal for applications requiring simultaneous multi-syringe operation. » Microfluidic and High-Pressure Syringe Pumps. Pumps specifically designed for microfluidic systems, supporting ultra-low flow rates, available in single-channel (NE-1002X) and dual-channel (NE-4002X) versions. High-pressure models (NE-8000) are also available for demanding applications. Choose the model that best suits your experimental needs. If you require additional features or models not listed, please contact us for assistance. - [Syringe Pumps – LP Series](https://www.micruxfluidic.com/product/syringe-pumps-lp-series/): MicruX offers high-precision, quality syringe pumps in the LP series, ideal for applications across pharmaceutical, medical, environmental sectors, and research laboratories. The LP series includes: » Single-Channel Syringe Pump. Includes basic infusion-only systems (LSP01-3A / LSP01-2A), very easy to operate with an LCD display, rotary switch, and simple membrane keypad. Pump models with both infusion and withdrawal modes are also available (TJ-3A/W0109-1B). » Dual-Channel Syringe Pump. Multi-channel pump with infusion and withdrawal modes (LSP02-2B). These pumps are very easy to operate with an LCD display, rotary switch, and simple membrane keypad. » Digital Syringe Pump. This system offers real-time intelligent control of the pump’s progress and status, with high stability and precision. It features a 7-inch touch screen and an intuitive graphical interface. These pumps are available in single-channel (dLSP510) or dual-channel (dLSP510) models, with infusion and withdrawal modes. Select the model that best fits your experimental setups. For additional models or features, please contact us, and we will assist you. - [Peristaltic Pumps](https://www.micruxfluidic.com/product/peristaltic-pumps/): MicruX provides high-precision and quality peristaltic pumps. The LP series peristaltic pumps are specially designed for industrial and laboratory applications. The LP series peristaltic pumps include: » Basic Peristaltic Pumps. They offer a wide range of flow rates and are easy to operate. Compact models (LP-L100-1E) are available with up to 2 channels in various colors to intuitively identify different types of applications. High-precision models (LP-BT100-3J) are also available with up to 2 channels that can be externally controlled. » Flow Peristaltic Pumps. These pumps offer solutions for precise speed control and flow calibration function, with models up to 4 channels (LP-L100-1S). Models with up to 24 channels (BT100-1L) are also available, featuring an LCD screen for pump status configuration and control. » Intelligent Peristaltic Pumps. These advanced systems feature an intuitive graphical interface and modular programming, enabling quick experiment setup and execution of complex multi-stage programs. Available in models with up to 4 channels (LP-L100-1F) and with automatic identification of heads and tubing (LP-L100-1FS). Select the model that best fits your experimental setups. If you need a different model or other features, contact us, and we will assist you. - [Flow System Packs](https://www.micruxfluidic.com/product/flow-system-packs/): MicruX offers a wide variety of accessories necessary for the use of printed and thin-film electrodes in flow injection analysis (FIA) systems in combination with the AIO / AIO-SPE platform and Flow-cell add-ons. Select the pack that best suits your experimental setup. If you need further advice, please contact us.