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Carbon Nanotubes Chemically Derlvatized with Redox Systems as Mediators for Biofuel Cell Applications

机译:用氧化还原系统化学脱碳的碳纳米管作为生物燃料电池应用的介体

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The aim of this study was designing of nanostractured bioelectrodes and assembling them into a biofuel cell with no separating membrane. Carbon nanotubes (CNTs) chemically connected with residues of typical mediators, i.e. ferrocene (Fc) and 2,2'-azino-bis--(3-ethylbenzothiazoline)-6-sulfonic acid (ABTS) deposited on glassy carbon electrodes (GCE) were found useful as mediators for the enzyme catalyzed electrode processes. The electrodes were in turn covered with glucose oxidase from Aspergillus niger AM-11 and laccase from Cerrena unicolor C-139, respectively, incorporated in a liquid-crystalline matrix. The nanostructured electrode coating with the cubic phase film containing enzymes acted as the catalytic surface for the enzymatic reactions that is oxidation of glucose at anode and reduction of oxygen at cathode. For the system with mediators anchored to CNTs the catalysis was almost ten times more efficient than on bare GCE electrodes: catalytic current of glucose oxidation was 1 mAcm~(-2) and oxygen reduction current exceeded 0.6 mAcm~(-2). The open circuit voltage of the biofuel cell was 0.43 V. Application of the carbon nanotubes increased maximum power output of the constructed biofuel cell to 100 muWcm~(-2) without stirring the solution. It is ca. 100 times more efficient than using the same bioelectrodes without nanotubes on the electrode surface.
机译:这项研究的目的是设计纳米结构的生物电极,并将其组装成没有分离膜的生物燃料电池。碳纳米管(CNT)与沉积在玻璃碳电极(GCE)上的典型介体残基,即二茂铁(Fc)和2,2'-叠氮基双-(3-乙基苯并噻唑啉)-6-磺酸(ABTS)化学连接被发现可用作酶催化电极过程的介体。依次用来自黑曲霉AM-11的葡萄糖氧化酶和来自Cerrena unicolor C-139的漆酶分别覆盖电极,将其掺入液晶基质中。具有含酶的立方相膜的纳米结构电极涂层充当酶促反应的催化表面,该酶促反应是在阳极氧化葡萄糖并在阴极还原氧气。对于将介体锚定在CNT上的系统,其催化效率几乎是在裸露的GCE电极上的十倍:葡萄糖氧化的催化电流为1 mAcm〜(-2),氧还原电流超过0.6 mAcm〜(-2)。生物燃料电池的开路电压为0.43V。碳纳米管的应用在不搅拌溶液的情况下将构建的生物燃料电池的最大功率输出增加到100μWcm·(-2)。它是ca。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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