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From the Cover: Electrocatalytic hydrogen oxidation by an enzyme at high carbon monoxide or oxygen levels

机译:从封面开始:高一氧化碳或氧气水平的酶对氢的电催化氧化

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摘要

Use of hydrogen in fuel cells requires catalysts that are tolerant to oxygen and are able to function in the presence of poisons such as carbon monoxide. Hydrogen-cycling catalysts are widespread in the bacterial world in the form of hydrogenases, enzymes with unusual active sites composed of iron, or nickel and iron, that are buried within the protein. We have established that the membrane-bound hydrogenase from the β-proteobacterium Ralstonia eutropha H16, when adsorbed at a graphite electrode, exhibits rapid electrocatalytic oxidation of hydrogen that is completely unaffected by carbon monoxide [at 0.9 bar (1 bar = 100 kPa), a 9-fold excess] and is inhibited only partially by oxygen. The practical significance of this discovery is illustrated with a simple fuel cell device, thus demonstrating the feasibility of future hydrogen-cycle technologies based on biological or biologically inspired electrocatalysts having high selectivity for hydrogen.
机译:在燃料电池中使用氢需要能够耐受氧气并且能够在有毒物质(例如一氧化碳)存在下起作用的催化剂。氢循环催化剂以掩埋在蛋白质中的氢酶(具有由铁,镍和铁组成的异常活性位点的酶)的形式广泛存在于细菌界。我们已经确定,当吸附在石墨电极上时,来自β-变形杆菌Ralstonia eutropha H16的膜结合的氢化酶会表现出氢气的快速电催化氧化作用,完全不受一氧化碳的影响[0.9 bar(1 bar = 100 kPa), 9倍过量],并且仅部分被氧气抑制。用简单的燃料电池装置说明了这一发现的实际意义,从而证明了基于对氢具有高选择性的生物或生物启发的电催化剂的未来氢循环技术的可行性。

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