化学
纳米团簇
过渡金属
联轴节(管道)
催化作用
金属
光化学
化学物理
纳米技术
有机化学
冶金
材料科学
作者
Lifeng Cai,Yu-Shan Cai,Wei Zhao,Jie Liang,Qing Chen,Fang‐Xing Xiao
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2025-06-16
卷期号:64 (25): 12815-12823
被引量:8
标识
DOI:10.1021/acs.inorgchem.5c01919
摘要
Metal nanocluster (NC)-mediated photocatalytic CO 2 conversion is an emerging avenue for achieving carbon neutrality, yet it remains underexplored due to the ultrashort charge lifespan of metal NCs. To surmount this obstacle, metal NC/transition metal chalcogenide (TMC) heterostructures are constructed via a ligand-initiated electrostatic self-assembly buildup. In this meticulously designed nanoarchitecture, glutathione (GSH)-protected metal NCs [Au x @GSH, Au 22 (GSH) 18, Ag 9 (GSH) 6, Ag 16 (GSH) 9, Ag 31 (GSH) 19 ] are uniformly anchored on the two-dimensional (2D) TMC (CdS, ZnIn 2 S 4, CdIn 2 S 4, In 2 S 3 ) framework, leading to well-defined metal NC/TMC composite photosystems. The favorable energy level alignment between these metal NCs and TMCs synergistically endows metal NC/TMC heterostructures with markedly increased photoredox activities, encompassing photocatalytic CO 2 reduction, H 2 production, and aromatic alcohol oxidation under visible light, far surpassing the corresponding pristine TMC counterparts. Alloy NCs (Au x Ag 1– x, Au x Cu 1– x )/TMCs are also constructed to demonstrate the universality of the heterostructures. The generation of a type II charge transport pathway between metal NCs and TMCs is unveiled to account for the photoredox mechanisms. Our work will provide an interesting idea for tuning charge transfer over metal NCs for photocatalysis.
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