Chronoamperometry Using Integrated Potentiostat Consisting of Poly-Si Thin-Film Transistors
Mutsumi Kimura, Kosuke Bundo, Yoshiki Imuro, Yuki Sagawa, Koushi Setsu
Abstract
Mutsumi Kimura, Kosuke Bundo, Yoshiki Imuro, Yuki Sagawa, Koushi Setsu
Abstract
We have conducted chronoamperometry using an integrated potentiostat consisting of poly-Si thin-film transistors. An electrochemical measurement of enzymatic redox reaction using glucose oxidase and ferrocene mediator is attempted as a practical example. It is found that the chronoamperogram depends on the glucose concentration, and a glucose concentration as low as 2 mM can be detected by comparing the chronoamperogram without glucose. The glucose sensitivity of the chronoamperometry is similar to that of the cyclic voltammetry and sufficient for diabetic diagnosis.
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We have conducted chronoamperometry using an integrated potentiostat consisting of poly-Si thin-film transistors. An electrochemical measurement of enzymatic redox reaction using glucose oxidase and ferrocene mediator is attempted as a practical example. It is found that the chronoamperogram depends on the glucose concentration, and a glucose concentration as low as 2 mM can be detected by comparing the chronoamperogram without glucose. The glucose sensitivity of the chronoamperometry is similar to that of the cyclic voltammetry and sufficient for diabetic diagnosis.
Key concepts: Chronoamperometry, Potentiostat, Cyclic voltammetry, Glucose oxidase, Materials science, Analytical Chemistry (journal), Chemistry, Electrochemistry