A hydrogen peroxide biosensor based on multiwalled carbon nanotubes-polyvinyl butyral film modified electrode


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Abstract

A novel approach to construct a amperometric biosensor for determination of H2O2 is described. Horseradish peroxidase (HRP) as a base enzyme was immobilized into the mixture of multiwalled carbon nanotubes (MWNTs) and polyvinyl butyral (PVB). Taking the classical hydroquinone as mediator, cyclic voltammetry and amperometric measurements were used to study and optimize the performance of the resulting H2O2 biosensor. The effect of the concentration of MWNTs, HRP, hydroquinone, solution pH, and the working potential of amperometry on the electrochemical biosensor was systematically studied. The results showed that the fabricated biosensor demonstrated significant electrocatalytic activity for the reduction of hydrogen peroxide with wide linear range from 0.000832 to 0.6 mM, and low detection limit 0.000167 mM (S/N = 3) with fast response time less than 8 s. The apparent Michaelis–Menten constant was determined to be 0.049 mM. Additionally, the biosensor exhibited high sensitivity, rapid response and good long-term stability.

About the authors

Li Han

College of Resource and Environmental Sciences; Province Key Laboratory of Fermentation Engineering and Biopharmaceutical

Email: ymzhang5262@163.com
China, Shanghai, 200241; Guiyang, 550003

Han Tao

Province Key Laboratory of Fermentation Engineering and Biopharmaceutical

Email: ymzhang5262@163.com
China, Guiyang, 550003

Minsheng Huang

College of Resource and Environmental Sciences

Email: ymzhang5262@163.com
China, Shanghai, 200241

Yiming Zhang

Province Key Laboratory of Fermentation Engineering and Biopharmaceutical; Guizhou Industry Polytechnic College

Author for correspondence.
Email: ymzhang5262@163.com
China, Guiyang, 550003; Guiyang, 550008

Shunbin Qiao

Guizhou Industry Polytechnic College

Email: ymzhang5262@163.com
China, Guiyang, 550008

Ruili Shi

Guizhou Industry Polytechnic College

Email: ymzhang5262@163.com
China, Guiyang, 550008

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