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首页> 外文期刊>Angewandte Chemie >An Efficient, Visible-Light-Driven, Hydrogen Evolution Catalyst NiS/ZnxCd1-xS Nanocrystal Derived from a Metal-Organic Framework
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An Efficient, Visible-Light-Driven, Hydrogen Evolution Catalyst NiS/ZnxCd1-xS Nanocrystal Derived from a Metal-Organic Framework

机译:衍生自金属有机框架的高效,可见光驱动,氢化催化剂NIS / ZNXCD1-XS纳米晶体

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摘要

Photocatalytic water splitting for hydrogen production using sustainable sunlight is a promising alternative to industrial hydrogen production. However, the scarcity of highly active, recyclable, inexpensive photocatalysts impedes the development of photocatalytic hydrogen evolution reaction (HER) schemes. Herein, a metal-organic framework (MOF)-template strategy was developed to prepare non-noble metal co-catalyst/solid solution heterojunction NiS/ZnxCd1-xS with superior photocatalytic HER activity. By adjusting the doping metal concentration in MOFs, the chemical compositions and band gaps of the heterojunctions can be fine-tuned, and the light absorption capacity and photocatalytic activity were further optimized. NiS/Zn0.5Cd0.5S exhibits an optimal HER rate of 16.78 mmolg(-1)h(-1) and high stability and recyclability under visible-light irradiation (lambda420 nm). Detailed characterizations and in-depth DFT calculations reveal the relationship between the heterojunction and photocatalytic activity and confirm the importance of NiS in accelerating the water dissociation kinetics, which is a crucial factor for photocatalytic HER.
机译:使用可持续阳光的光催化水分用于氢气生产是工业氢生产的有希望的替代品。然而,高活性,可回收的,廉价的光催化剂的稀缺性阻碍了光催化氢气进化反应(她)方案的发展。在此,开发了一种金属 - 有机框架(MOF) - 制备非贵金属助催化剂/固体溶液异质结,具有优异的光催化剂的活性。通过调节MOF中的掺杂金属浓度,可以进行微调的化学组成和杂交功能的带间隙,并进一步优化光吸收能力和光催化活性。 NIS / ZN0.5CD0.5S在可见光照射下显示出16.78mmolg(-1)H(-1)H(-1)H(-1)的最佳速率(-1)H(-1),高稳定性和可回收性。详细的表征和深入的DFT计算揭示了异质结和光催化活性之间的关系,并确认了NIS在加速水解离动力学方面的重要性,这是光催化她的关键因素。

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