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首页> 外文期刊>RSC Advances >DFT study of the mechanism of hydrogen evolution catalysed by molecular Ni, Co and Fe catalysts containing a diamine-tripyridine ligand
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DFT study of the mechanism of hydrogen evolution catalysed by molecular Ni, Co and Fe catalysts containing a diamine-tripyridine ligand

机译:DFT研究含二胺-三吡啶配体的分子Ni,Co和Fe催化剂催化的析氢机理

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Electrolysis of water to obtain hydrogen is a practical way to transform surplus electrical power into clean and sustainable hydrogen fuels. A series of molecular [M(bztpen)(sol)](2+) (M = Ni, Co, and Fe) complexes (bztpen = N-benzyl-N,N',N'-tris(pyridine-2-ylmethyl) ethylenediamine) have been reported to be efficient electrocatalysts for H-2 production from water reduction. Density functional calculations were performed to explore the reaction mechanisms of water reduction, catalyzed by these three catalysts. The calculations showed that [Ni-II(bztpen)](2+) and [Fe-II(bztpen)](2+) have quite similar mechanisms, involving four major steps, namely, one electron reduction, proton-coupled electron transfer, protonation of a pyridine ligand, and H-H bond formation. However, in contrast with [Fe-II(bztpen)](2+), [Ni-II(bztpen)](2+) prefers to be hexa-coordinated with a water molecule bound, and the dissociation of this water molecule is required to generate a more reactive penta-coordinated species. For [Co-II(bztpen)](2+), the mechanism involves three steps, namely, two sequential proton-coupled electron transfer processes, followed by H-H bond formation. For all three catalysts, the first reduction is the rate-limiting step, and the H-H bond formation has a very facile barrier.
机译:水电解制氢是将多余的电能转化为清洁,可持续的氢燃料的一种实用方法。一系列分子[M(bztpen)(sol)](2+)(M = Ni,Co和Fe)配合物(bztpen = N-苄基-N,N',N'-三(吡啶-2-基甲基) )乙二胺)据报道是通过减水生产H-2的有效电催化剂。进行密度泛函计算以探索这三种催化剂催化的水还原反应的机理。计算表明,[Ni-II(bztpen)](2+)和[Fe-II(bztpen)](2+)具有非常相似的机理,涉及四个主要步骤,即一个电子还原,质子耦合电子转移,吡啶配体的质子化和HH键的形成。但是,与[Fe-II(bztpen)](2+)相反,[Ni-II(bztpen)](2+)倾向于与水分子结合成六配位,并且该水分子的解离为需要产生更多反应性的五配位物种。对于[Co-II(bztpen)](2+),机理涉及三个步骤,即两个连续的质子耦合电子转移过程,然后形成H-H键。对于所有三种催化剂,第一个还原是限速步骤,并且H-H键的形成非常容易。

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