首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A highly efficient gold/electrospun PAN fiber material for improved laccase biocathodes for biofuel cell applications
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A highly efficient gold/electrospun PAN fiber material for improved laccase biocathodes for biofuel cell applications

机译:一种高效的金/电纺PAN纤维材料,用于改进用于生物燃料电池的漆酶生物阴极

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摘要

We explore for the first time the ability of a three-dimensional polyacrylonitrile/gold material prepared by a low-cost and scalable synthesis method, based on the combination of electrospinning and sputtering, as a new material with large surface area to provide high loadings of enzymes to enhance the electrochemical performances of enzyme electrodes in biofuel cells (BFCs). An ethanol/O2 BFC has been developed based on enzymatic reactions performed at both the cathode and anode with immobilization of the respective enzymes and mediators on the three-dimensional nanostructured electrodes. The power density delivered is 1.6 mW cm~(-2) at 0.75 V, which is five times the power density delivered by the BFC built on flat bioelectrodes. The greatly improved performance of these synthesized nanostructured electrodes makes them exciting materials for their implantation in biofuel cell applications.
机译:我们首次探索了通过低成本和可扩展的合成方法(基于静电纺丝和溅射)制备的三维聚丙烯腈/金材料作为具有大表面积的新材料以提供高负载量的能力。酶来增强生物燃料电池(BFC)中酶电极的电化学性能。基于在阴极和阳极进行的酶促反应,并将相应的酶和介体固定在三维纳米结构电极上,已经开发出乙醇/ O2 BFC。在0.75 V时,输送的功率密度为1.6 mW cm〜(-2),是在扁平生物电极上构建的BFC输送的功率密度的五倍。这些合成的纳米结构电极的性能大大提高,使其成为在生物燃料电池应用中植入的令人兴奋的材料。

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