首页> 外文期刊>Advanced energy materials >Swapping Catalytic Active Sites from Cationic Ni to Anionic S in Nickel Sulfide Enables More Efficient Alkaline Hydrogen Generation
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Swapping Catalytic Active Sites from Cationic Ni to Anionic S in Nickel Sulfide Enables More Efficient Alkaline Hydrogen Generation

机译:将硫化镍中的催化活性位点从阳离子 Ni 交换为阴离子 S,可实现更高效的碱性氢生成

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摘要

Tuning active sites in catalyst design is the key to boosting the intrinsic activity of hydrogen evolution reaction (HER). Cationic Ni has been widely established as an active site in nickel sulfide due to the relatively low Gibbs free energy of hydrogen adsorption (Delta G(H*)). However, one of the big unsettled issues is whether S can be activated as a more active site than Ni in NiS2. Herein, the swapping of catalytic active sites from cationic Ni to anionic S in a hierarchical structure consisting of NiS2 nanoflowers grown on dual-phased NiS2-NiS foam (denoted as NiS2/NiS2-NiS) is shown. A combined study of theoretical calculations and X-ray photoelectron spectroscopy analysis demonstrate the remarkably antidromic electron transfer from Ni to S sites, therefore relieving the adsorption of hydrogen species and endowing a higher intrinsic activity at the S site over the Ni site. The new catalyst therefore exhibits superior HER performance, identified by doubling in the intrinsic activity and a twofold increased turnover frequency value compared to its pure NiS2 counterpart (0.028 s(-1) vs 0.015 s(-1) at the applied overpotential of 200 mV). The NiS2/NiS2-NiS electrode also demonstrates outstanding activity toward the oxygen evolution reaction and overall water splitting.
机译:在催化剂设计中调控活性位点是提高析氢反应(HER)内在活性的关键。阳离子镍已被广泛确定为硫化镍中的活性位点,因为氢吸附的吉布斯自由能相对较低(Delta G(H*))。然而,一个悬而未决的重大问题是,在NiS2中,S是否可以被激活为比Ni更活跃的位点。本文显示了在双相NiS2-NiS泡沫(表示为NiS2/NiS2-NiS)上生长的NiS2纳米花组成的分层结构中,从阳离子Ni到阴离子S的催化活性位点的交换。理论计算和X射线光电子能谱分析相结合,证明了从Ni到S位点的电子转移非常反转,从而减轻了氢物质的吸附,并赋予S位点比Ni位点更高的本征活性。因此,与纯NiS2催化剂相比,新催化剂表现出优异的HER性能(在施加200 mV过电位时为0.028 s(-1)对比0.015 s(-1)),其特性活性增加了一倍,周转频率值提高了两倍。NiS2/NiS2-NiS电极在析氧反应和整体水分解方面也表现出优异的活性。

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