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首页> 外文期刊>Electroanalysis >Covalent Attachment of the Water-insoluble Ni((P2N2Phe)-N-Cy)(2) Electrocatalyst to Electrodes Showing Reversible Catalysis in Aqueous Solution
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Covalent Attachment of the Water-insoluble Ni((P2N2Phe)-N-Cy)(2) Electrocatalyst to Electrodes Showing Reversible Catalysis in Aqueous Solution

机译:水不溶性Ni((P2N2Phe)-N-Cy)(2)电催化剂与电极在水溶液中的可逆共价结合

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摘要

Hydrogenases are a diverse group of metalloenzymes which catalyze the reversible conversion between molecular hydrogen and protons at high rates. The catalytic activity of these enzymes does not require overpotential because their active site has been evolutionarily optimized to operate fast and efficiently. These enzymes have inspired the development of molecular catalysts, which have dramatically improved in efficiency in recent years, to the point that some synthetic catalysts even outperform hydrogenases under certain conditions. In this work, we use a reversible noble-metal-free homogeneous catalyst, the [Ni((P2N2Phe)-N-Cy)(2)](2+) complex, and we covalently immobilize it on a functionalized highly oriented pyrolytic graphite "edge" (HOPG(e)) electrode surface. This catalyst is not water soluble, but once it is surface-confined on the electrode, it maintains its catalytic properties in aqueous solutions, showing reversibility for H-2 oxidation/reduction. Immobilization of the [Ni((P2N2Phe)-N-Cy)(2)](2+) complex onto a multi-walled carbon nanotubes coated electrode leads to even higher catalytic current densities and enhanced stability.
机译:氢酶是各种各样的金属酶,它们以高速率催化分子氢与质子之间的可逆转化。这些酶的催化活性不需要超电势,因为它们的活性位点已经经过进化优化,可以快速有效地运行。这些酶激发了分子催化剂的发展,近年来,这种催化剂的效率已大大提高,以至于某些条件下某些合成催化剂甚至胜过氢化酶。在这项工作中,我们使用可逆的无贵金属均相催化剂[Ni((P2N2Phe)-N-Cy)(2)](2+)络合物,并将其共价固定在功能化的高度取向的热解石墨上“边缘”(HOPG(e))电极表面。该催化剂不是水溶性的,但是一旦将其表面限制在电极上,它就可以在水溶液中保持其催化性能,显示出H-2氧化/还原的可逆性。 [Ni((P2N2Phe)-N-Cy)(2)](2+)络合物固定到多壁碳纳米管涂覆的电极上导致更高的催化电流密度和增强的稳定性。

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