Sensing and Bio-Sensing Research · 2019 · 26 citations · 27 references
EngineeringPrinting LimitsInkjet Printing TechnologyEducationBiomedical EngineeringSensor TechnologyPrinted ElectronicsInstrumentationNanosensorMicrofluidicsSmartphone Impedance ReadoutBiomedical SensorsSensorsFlexible ElectronicsMicrofabricationBioelectronicsSensor DesignElectroanalytical SensorTechnologyBiosensors Fabrication Platform
Inkjet printing technology is showing a disruptive potential for low-cost optical and electrochemical biosensors fabrication. This technology is becoming affordable for every laboratory, potentially allowing every research group to implement a biosensors fabrication platform with consumer inkjet printers, commercially available inks and smartphones for readout. In the present work we developed an example of such platform testing several inks, printers, and substrates. We defined and optimized the protocols assessing the printing limits and the fabricated biosensors electrochemical properties in standard solutions. Our platform has a total cost of less than 450 Euro and a single sensor fabrication cost of 0.026 Euro. Finally, we tested the sensitivity of smartphone-performed impedance measurements with printed biosensors surface coverage by Self Assembling Monolayers (SAM), validating them with standard instruments.
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Electrochemical sensing in paper-based microfluidic devices
Zhihong Nie, Christian A. Nijhuis, Jinlong Gong et al. · Lab on a Chip · 2009 · 917 citations · Full text
Fabrication of an ammonia gas sensor using inkjet-printed polyaniline nanoparticles
Karl Crowley, Aoife Morrin, A. Hernández et al. · Talanta · 2008 · 228 citations