2010IEEE Electron Device LettersRequires access

Chronoamperometry Using Integrated Potentiostat Consisting of Poly-Si Thin-Film Transistors

Mutsumi Kimura, Kosuke Bundo, Yoshiki Imuro, Yuki Sagawa, Koushi Setsu

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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.

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Available 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.

Key concepts: Chronoamperometry, Potentiostat, Cyclic voltammetry, Glucose oxidase, Materials science, Analytical Chemistry (journal), Chemistry, Electrochemistry

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