纳米片
过电位
电解质
制氢
金属有机骨架
材料科学
析氧
动力学
活动站点
分解水
电流密度
化学物理
催化作用
氢
化学
纳米技术
电化学
物理化学
电极
物理
光催化
吸附
有机化学
量子力学
生物化学
作者
F.T. Cheng,Xianyun Peng,Lingzi Hu,Bin Yang,Zhongjian Li,Chung‐Li Dong,Jeng‐Lung Chen,Liang‐Ching Hsu,Lecheng Lei,Qiang Zheng,Ming Qiu,Liming Dai,Yang Hou
标识
DOI:10.1038/s41467-022-34278-6
摘要
Two-dimensional metal-organic frameworks (MOFs) have been explored as effective electrocatalysts for hydrogen evolution reaction (HER). However, the sluggish water activation kinetics and structural instability under ultrahigh-current density hinder their large-scale industrial applications. Herein, we develop a universal ligand regulation strategy to build well-aligned Ni-benzenedicarboxylic acid (BDC)-based MOF nanosheet arrays with S introducing (S-NiBDC). Benefiting from the closer p-band center to the Fermi level with strong electron transferability, S-NiBDC array exhibits a low overpotential of 310 mV to attain 1.0 A cm-2 with high stability in alkaline electrolyte. We speculate the newly-constructed triangular "Ni2-S1" motif as the improved HER active region based on detailed mechanism analysis and structural characterization, and the enhanced covalency of Ni-O bonds by S introducing stabilizes S-NiBDC structure. Experimental observations and theoretical calculations elucidate that such Ni sites in "Ni2-S1" center distinctly accelerate the water activation kinetics, while the S site readily captures the H atom as the optimal HER active site, boosting the whole HER activity.
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