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通过适度配位光诱导富电子铜单原子负载用于析氢反应

Photoinduced loading of electron-rich Cu single atoms by moderate coordination for hydrogen evolution.

作者信息

Fu Weiwei, Wan Jin, Zhang Huijuan, Li Jian, Chen Weigen, Li Yuke, Guo Zaiping, Wang Yu

机构信息

The School of Chemistry and Chemical Engineering, State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, 174 Shazheng Street, Shapingba District, Chongqing City, 400044, PR China.

The school of Electrical Engineering, Chongqing University, 174 Shazheng Street, Shapingba District, Chongqing City, 400044, China.

出版信息

Nat Commun. 2022 Sep 20;13(1):5496. doi: 10.1038/s41467-022-33275-z.

Abstract

Single-atom catalysts offer maximal atom utilization efficiencies and high-electronegativity heteroatoms play a crucial role in coordinating reactive single metal atoms to prevent agglomeration. However, these strong coordination bonds withdraw electron density for coordinated metal atoms and consequently affect their catalytic activity. Herein we reveal the high loading (11.3 wt%) and stabilization of moderately coordinated Cu-P structure on black phosphorus support by a photochemical strategy with auxiliary hydrogen. Single-atom Cu sites with an exceptional electron-rich feature show the [Formula: see text] close to zero to favor catalysis. Neighboring Cu atoms work in synergy to lower the energy of key water adsorption and dissociation intermediates. The reported catalyst shows a low overpotential of only 41 mV at 10 mA cm and Tafel slope of 53.4 mV dec for the alkaline hydrogen evolution reaction, surpassing both isolated Cu single atoms and Cu nanoclusters. The promising materials design strategy sheds light on the design and fabrication of high-loading single metal atoms and the role of neighboring single atoms for enhanced reaction kinetics.

摘要

单原子催化剂具有最大的原子利用效率,高电负性杂原子在配位活性单金属原子以防止团聚方面起着关键作用。然而,这些强配位键会提取配位金属原子的电子密度,从而影响其催化活性。在此,我们通过光化学策略和辅助氢揭示了在黑磷载体上高负载量(11.3 wt%)且稳定的适度配位Cu-P结构。具有异常富电子特征的单原子Cu位点显示出[公式:见原文]接近零,有利于催化。相邻的Cu原子协同作用以降低关键水吸附和解离中间体的能量。所报道的催化剂在碱性析氢反应中,在10 mA cm时过电位仅为41 mV,塔菲尔斜率为53.4 mV dec,超过了孤立的Cu单原子和Cu纳米团簇。这种有前景的材料设计策略为高负载单金属原子的设计和制备以及相邻单原子对增强反应动力学的作用提供了启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f447/9489781/030dae383757/41467_2022_33275_Fig1_HTML.jpg

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