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Bioelectrocatalysis: Achievement of Limiting Enzyme Performance Characteristics in Acceleration of Electrode Reactions

机译:生物电催化:加速电极反应时限制酶性能的实现

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The anticipated crisis in energy production has stimulated a search for alternative energy sources. The only useful alternative to platinum based electrocatalysis for H2 oxidation is bioelectrocatalysis by hydrogenases, first reported by our group 25 years ago [1]. Bioelectrocatalysis is a phenomenon of acceleration of electrode reactions by the enzymes. Direct bioelectrocatalysis presumes the direct electron exchange between the enzyme active site and the electrode without any use of diffusion free mediators. After immersion into H2-saturated solution, the hydrogenase electrode reached the equilibrium hydrogen potential. At positive overvoltages the hydrogenase electrode generated high anodic current, which can be attributed only to hydrogen oxidation. Cathodic current at negative overvoltages has been proven to occur due to H2 evolution.
机译:预期的能源生产危机促使人们寻找替代能源。 H2氧化铂基电催化的唯一有用的替代方法是氢酶的生物电催化,这是我们研究小组25年前首次报道的[1]。生物电催化是酶加速电极反应的现象。直接生物电催化作用假定酶活性位点和电极之间直接进行电子交换,而无需使用无扩散介体。浸入H2饱和溶液后,氢化酶电极达到平衡氢势。在正过电压下,氢化酶电极会产生高阳极电流,这只能归因于氢氧化。已经证明,由于H2的析出,在负过电压下产生了阴极电流。

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