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首页> 外文期刊>European journal of inorganic chemistry >Molecular electrocatalysts for the oxidation of hydrogen and the production of hydrogen - The role of pendant amines as proton relays
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Molecular electrocatalysts for the oxidation of hydrogen and the production of hydrogen - The role of pendant amines as proton relays

机译:氢氧化和氢产生的分子电催化剂-侧胺作为质子中继的作用

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摘要

Electrocatalysts for efficient conversion between electricity and chemical bonds will play a vital role in future systems for storage and delivery of energy. Our research on functional models of hydrogenase enzymes uses nickel and cobalt, abundant and inexpensive metals, in contrast to platinum, a precious metal used in fuel cells. A key feature of our research is a focus on the use of pendant amines incorporated into diphosphane ligands. These pendant amines function as proton relays, lowering the barrier to proton transfers to and from the catalytically active metal site. The hydride acceptor ability of metal cations, along with the basicity of pendant amines, are key thermochemical values that determine the thermodynamics of addition of H_2 to a metal complex with a pendant amine incorporated into its ligand. Nickel catalysts for oxidation of H_2 have turnover frequencies up to 50 s-1 (at 1 atm H_2 and room temperature). Nickel and cobalt catalysts for production of H_2 by reduction of protons were studied; one of them has a turnover frequency over 1000 s-1.
机译:用于电键和化学键之间有效转换的电催化剂将在未来的能量存储和传递系统中发挥至关重要的作用。与燃料电池中使用的贵金属铂相比,我们对氢化酶功能模型的研究使用的是镍和钴,丰富且便宜的金属。我们研究的一个关键特征是着重使用结合在二膦配体中的侧链胺。这些侧基胺起质子中继的作用,降低了质子往返于催化活性金属部位的传递的障碍。金属阳离子的氢化物受体能力以及侧基胺的碱度是关键的热化学值,这些热化学值决定了将H_2加到金属配位体中并附有侧基胺的金属络合物的热力学。用于氧化H_2的镍催化剂的转换频率高达50 s-1(在1 atm H_2和室温下)。研究了通过质子还原生产H_2的镍和钴催化剂。其中之一的周转频率超过1000 s-1。

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