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Enzymatic electrodes nanostructured with functionalized carbon nanotubes for biofuel cell applications

机译:带有功能化碳纳米管的纳米结构化酶电极,用于生物燃料电池应用

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摘要

Nanostructured bioelectrodes were designed and assembled into a biofuel cell with no separating membrane. The glassy carbon electrodes were modified with mediator-functionalized carbon nanotubes. Ferrocene (Fc) and 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulfonate) diammonium salt (ABTS) bound chemically to the carbon nanotubes were found useful as mediators of the enzyme catalyzed electrode processes. Glucose oxidase from Aspergillus niger AM-11 and laccase from Cerrena unicolor C-139 were incorporated in a liquid-crystalline matrix-monoolein cubic phase. The carbon nanotubes- nanostructured electrode surface was covered with the cubic phase film containing the enzyme and acted as the catalytic surface for the oxidation of glucose and reduction of oxygen. Thanks to the mediating role of derivatized nanotubes the catalysis was almost ten times more efficient than on the GCE electrodes: catalytic current of glucose oxidation was 1 mA cm~(-2) and oxygen reduction current exceeded 0.6 mA cm~(-2). The open circuit voltage of the biofuel cell was 0.43 V. Application of carbon nanotubes increased the maximum power output of the constructed biofuel cell to 100 μW cm~(-2) without stirring of the solution which was ca. 100 times more efficient than using the same bioelectrodes without nanotubes on the electrode surface.
机译:设计了纳米结构的生物电极,并将其组装成没有分隔膜的生物燃料电池。玻碳电极用介体官能化的碳纳米管改性。发现与碳纳米管化学结合的二茂铁(Fc)和2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸盐)二铵盐(ABTS)可用作酶催化电极过程的介体。将来自黑曲霉AM-11的葡萄糖氧化酶和来自Cerrena unicolor C-139的漆酶掺入液晶基质-单油精立方相中。碳纳米管纳米结构的电极表面被含有酶的立方相膜覆盖,并充当葡萄糖氧化和氧还原的催化表面。由于衍生的纳米管的介导作用,其催化效率几乎是在GCE电极上的十倍:葡萄糖氧化的催化电流为1 mA cm〜(-2),氧还原电流超过0.6 mA cm〜(-2)。生物燃料电池的开路电压为0.43V。碳纳米管的应用将构建的生物燃料电池的最大功率输出提高到100μWcm〜(-2),而无需搅拌溶液,大约为。与使用在电极表面上没有纳米管的相同生物电极相比,效率高100倍。

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