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Mediatorless high-power biofuel cells based on compressed nanotube-enzyme electrodes

机译:基于压缩纳米管酶电极的无介体大功率生物燃料电池

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摘要

Enzymatic fuel cells use enzymes to produce energy from bioavailable substrates. However, such biofuel cells are limited by the difficult electrical wiring of enzymes to the electrode. Here we show the efficient wiring of enzymes in a conductive pure carbon nanotube matrix for the fabrication of a glucose biofuel cell (GBFC). Glucose oxidase and laccase were respectively incorporated in carbon nanotube disks by mechanical compression. The characterization of each bioelectrode shows an open circuit potential corresponding to the redox potential of the respective enzymes, and high current densities for glucose oxidation and oxygen reduction. The mediatorless GBFC delivers a high power density up to 1.3 mW cm−2 and an open circuit voltage of 0.95 V. Moreover, the GBFC remains stable for 1 month and delivers 1 mW cm−2 power density under physiological conditions (5×10−3 mol l−1 glucose, pH 7). To date, these values are the best performances obtained for a GBFC.
机译:酶燃料电池使用酶从可生物利用的底物中产生能量。但是,这种生物燃料电池受到酶到电极的困难布线的限制。在这里,我们显示了用于制造葡萄糖生物燃料电池(GBFC)的导电纯碳纳米管基质中酶的有效布线。通过机械压缩将葡萄糖氧化酶和漆酶分别掺入碳纳米管盘中。每个生物电极的表征显示了与各个酶的氧化还原电势相对应的开路电势,以及用于葡萄糖氧化和氧还原的高电流密度。无介质GBFC提供高达1.3 deliversmW cm −2 的高功率密度和0.95 0.9V的开路电压。此外,GBFC保持稳定1个月并提供1 mW cm −2生理条件(5×10 −3 mol l -1 葡萄糖,pH 7)下的功率密度。迄今为止,这些值是GBFC的最佳性能。

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