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A Biofuel Cell Based on Biocatalytic Reactions of Glucose on Both Anode and Cathode Electrodes

机译:基于阳极和阴极电极葡萄糖生物催化反应的生物燃料细胞

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Biofuel cells based on electrocatalytic oxidation of NADH and reduction of H2O2 have been prepared using carbon fiber electrodes functionalized with graphene nano-flakes. The electrochemical oxidation of NADH was catalyzed by Meldola's blue (MB), while the reduction of H2O2 was catalyzed by hemin, both catalysts were adsorbed on the graphene flakes due to their - staking. In the next set of experiments, the MB- and hemin-electrodes were additionally modified with glucose dehydrogenase (GDH) and glucose oxidase (GOx), respectively. The enzyme catalyzed reactions in the presence of glucose, NAD(+) and O-2 resulted in the production of NADH and H2O2 insitu. The produced NADH and H2O2 were oxidized and reduced, respectively, at the bioelectrocatalytic electrodes, thus producing voltage and current generated by the biofuel cell. The enzyme-based biofuel cells operated in a human serum solution modelling an implantable device powered from the natural biofluid. Finally, two enzyme-based biofuel cell connected in series and operating in the serum solution produced electrical power sufficient for activation of an electronic watch used as an example device.
机译:使用用石墨烯纳米薄片官能化的碳纤维电极制备基于NADH电催化氧化的生物燃料细胞和H 2 O 2的还原。 NADH的电化学氧化由Meldola的蓝色(MB)催化,而通过血红素催化H 2 O 2的还原,由于它们的铆接而吸附在石墨烯片上。在下一组实验中,分别用葡萄糖脱氢酶(GDH)和葡萄糖氧化酶(GOX)另外修饰MB和血清电极。酶催化在葡萄糖,NAD(+)和O-2存在下的反应导致NADH和H2O2 Insitu的产生。产生的NADH和H 2 O 2分别在生物电池催化电极氧化并降低,从而产生由生物燃料电池产生的电压和电流。基于酶的生物燃料细胞在人血清溶液中操作,建模从天然生物流体供电的可植入装置。最后,两种基于酶的生物燃料电池串联连接并在血清溶液中操作,产生了足以激活用作示例装置的电子表的电力。

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