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Electrochemical sensing in paper-based microfluidic devices

Lab on a Chip · 2009 · Vol. 10(4) · pp. 477–483
Zhihong NieChristian A. NijhuisJinlong GongXin ChenAlexander KumachevAndres W. MartinezMax NarovlyanskyGeorge M. Whitesides

Abstract

This paper describes the fabrication and the performance of microfluidic paper-based electrochemical sensing devices (we call the microfluidic paper-based electrochemical devices, microPEDs). The microPEDs comprise paper-based microfluidic channels patterned by photolithography or wax printing, and electrodes screen-printed from conducting inks (e.g., carbon or Ag/AgCl). We demonstrated that the microPEDs are capable of quantifying the concentrations of various analytes (e.g., heavy-metal ions and glucose) in aqueous solutions. This low-cost analytical device should be useful for applications in public health, environmental monitoring, and the developing world.

Biosensors and Analytical DetectionAdvanced biosensing and bioanalysis techniquesElectrochemical Analysis and ApplicationsMicrofluidicsPhotolithographyNanotechnologyFabricationMaterials scienceAnalyteElectrochemistryElectrodeChemistryChromatography

MeSH terms

AnimalsCattleDisposable EquipmentElectrochemistryElectrodesGlycosuriaHumansPaperTime FactorsWaterReproducibility of ResultsSystems IntegrationMetals, HeavyMicrofluidic Analytical Techniques
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Electrochemical sensing in paper-based microfluidic devices · Scinovex