Cu Single Atom Stabilized Au Nanoclusters on TiO 2 for Efficient Hydrogen Production
Wen Zhang, Yu Zhou, Xinhao Sun, Shuo Chen, Qinxue Nie, Yangyang Li, Weixin Huang, Seda Karaboğa 等 11 位
Anhui University of Traditional Chinese Medicine University of Science and Technology of China Bilkent University Bolu Abant İzzet Baysal University
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摘要与影响
Metal nanoclusters (NCs) with atomically precise structures are widely used for light energy conversion in photocatalysis. However, the challenges in utilizing the photogenerated charges and light‐induced photocatalyst instability often result in poor photocatalytic performance. Herein, we investigate tailoring of the local photocatalyst environment and promotion of the charge carrier transfer to increase the reactivity and stability of Au n /Cu‐TiO 2 photocatalyst in photocatalytic hydrogen evolution from water under UVA illumination via in situ characterizations and theoretical calculations. The interfacial interaction between Au NCs and TiO 2 is regulated by precisely‐anchored Cu single atoms (SAs) acting as electron acceptors, which can facilitate electron transfer from TiO 2 domains to Au NCs, thereby increasing the electron density of Au NCs, expedite electron capture, and enhance hydrogen production efficiency. As a result, Au n /Cu‐TiO 2 exhibits 16.67 mmol·g −1 ·h −1 H 2 production rate, 22.7% apparent quantum yield, excellent photocatalytic stability, and recyclability under UVA light irradiation. This work offers novel insights into the rational design of semiconductor photocatalysts promoted with metal NCs and SAs, highlighting the cooperation effect in high photocatalytic performance.
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材料 / 化学Nanocluster Synthesis and Applications
Advanced Photocatalysis Techniques · Gold and Silver Nanoparticles Synthesis and Applications
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