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Multiscale Carbon Materials as Supports for Bioelectrodes

机译:多尺度碳材料作为生物电极的支持

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A quantitative study of transport and reaction in multiscale porous biocatalytic electrodes is presented, using glucose oxidation catalyzed by glucose oxidase as a model system. Kinetic parameters determined from planar electrodes are applied to porous electrodes to determine utilization and transport properties. In a multiscale porous electrode containing multi-wall carbon nanotubes supported on carbon fibers, surface area increases 100-fold over bare fibers, but catalyst utilization of about 10% is observed. Hence, improving the dispersion of active material over the entire nanoscale area is expected to further improve electrode performance.
机译:呈现了多尺度多孔生物催化电极的运输和反应的定量研究,使用葡萄糖氧化酶作为模型系统催化的葡萄糖氧化。从平面电极确定的动力学参数施加到多孔电极以确定利用和运输性质。在含有支撑在碳纤维上的多壁碳纳米管的多尺度多孔电极中,表面积在裸纤维上增加100倍,但观察到约10%的催化剂利用。因此,预期改善活性材料在整个纳米级面积上的分散,以进一步改善电极性能。

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