卟啉
光催化
等离子体子
催化作用
材料科学
钴
表面等离子共振
纳米颗粒
光化学
纳米结构
纳米技术
氢
化学
光电子学
有机化学
冶金
作者
Huixiang Sheng,Jin Wang,Juhui Huang,Zhuoyao Li,Guozhang Ren,Linrong Zhang,Liuyingzi Yu,Mengshuai Zhao,Xuehui Li,Gongqiang Li,Ning Wang,Chen Shen,Gang Lü
标识
DOI:10.1038/s41467-023-37271-9
摘要
The reaction efficiency of reactants near plasmonic nanostructures can be enhanced significantly because of plasmonic effects. Herein, we propose that the catalytic activity of molecular catalysts near plasmonic nanostructures may also be enhanced dramatically. Based on this proposal, we develop a highly efficient and stable photocatalytic system for the hydrogen evolution reaction (HER) by compositing a molecular catalyst of cobalt porphyrin together with plasmonic gold nanoparticles, around which plasmonic effects of localized electromagnetic field, local heating, and enhanced hot carrier excitation exist. After optimization, the HER rate and turn-over frequency (TOF) reach 3.21 mol g−1 h−1 and 4650 h−1, respectively. In addition, the catalytic system remains stable after 45-hour catalytic cycles, and the system is catalytically stable after being illuminated for two weeks. The enhanced reaction efficiency is attributed to the excitation of localized surface plasmon resonance, particularly plasmon-generated hot carriers. These findings may pave a new and convenient way for developing plasmon-based photocatalysts with high efficiency and stability. The reaction efficiency of reactants near plasmonic nanostructures can be enhanced under illumination. Here, the authors show that the activity of a Co porphyrin molecular catalyst bound to Au nanoparticles is enhanced by plasmonic effects, yielding a high photocatalytic hydrogen generation rate.
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