4.8 Article

Electrochemical sensing based on redox mediation at carbon nanotubes

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ANALYTICAL CHEMISTRY
卷 77, 期 13, 页码 3960-3965

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AMER CHEMICAL SOC
DOI: 10.1021/ac050059u

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  1. NIGMS NIH HHS [GM 08194] Funding Source: Medline

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An electrochemical sensing platform was developed based on the integration of redox mediators and carbon nanotubes (CNT) in a polymeric matrix. To demonstrate the concept, a redox mediator Azure dye (AZU) was covalently attached to polysaccharide chains of chitosan (CHIT) and interspersed with CNT to form composite films for the amperometric determination of beta-nicotinamide adenine dinucleotide (NADH). The incorporation of CNT into CHIT-AZU matrix facilitated the AZU-mediated electrooxidation of NADH. In particular, CNT decreased the over-potential for the mediated process by an extra 0.30 V and amplified the NADH current by similar to 35 times (at -0.10 V) while reducing the response time from similar to 70 s for CHIT-AZU to similar to 5 s for CHIT-AZU/CNT films. These effects were discussed in terms of the AZU/CNT synergy, which improved charge propagation through the CHIT-AZU/CNT matrix. The concept of CNT-facilitated redox mediation in polymeric matrixes has a potential to be of general interest for expediting redox processes in electrochemical devices such as sensors, biosensors, and biological fuel cells and reactors.

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