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用于增强光催化和电催化的等离子体纳米结构的最新进展

Recent Advances in Plasmonic Nanostructures for Enhanced Photocatalysis and Electrocatalysis.

作者信息

Li Siwei, Miao Peng, Zhang Yuanyuan, Wu Jie, Zhang Bin, Du Yunchen, Han Xijiang, Sun Jianmin, Xu Ping

机构信息

MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, P. R. China.

出版信息

Adv Mater. 2021 Feb;33(6):e2000086. doi: 10.1002/adma.202000086. Epub 2020 Mar 23.

Abstract

Plasmonic nanomaterials coupled with catalytically active surfaces can provide unique opportunities for various catalysis applications, where surface plasmons produced upon proper light excitation can be adopted to drive and/or facilitate various chemical reactions. A brief introduction to the localized surface plasmon resonance and recent design and fabrication of highly efficient plasmonic nanostructures, including plasmonic metal nanostructures and metal/semiconductor heterostructures is given. Taking advantage of these plasmonic nanostructures, the following highlights summarize recent advances in plasmon-driven photochemical reactions (coupling reactions, O dissociation and oxidation reactions, H dissociation and hydrogenation reactions, N fixation and NH decomposition, and CO reduction) and plasmon-enhanced electrocatalytic reactions (hydrogen evolution reaction, oxygen reduction reaction, oxygen evolution reaction, alcohol oxidation reaction, and CO reduction). Theoretical and experimental approaches for understanding the underlying mechanism of surface plasmon are discussed. A proper discussion and perspective of the remaining challenges and future opportunities for plasmonic nanomaterials and plasmon-related chemistry in the field of energy conversion and storage is given in conclusion.

摘要

等离子体纳米材料与具有催化活性的表面相结合,可为各种催化应用提供独特的机遇,在这些应用中,适当的光激发产生的表面等离子体可用于驱动和/或促进各种化学反应。本文简要介绍了局域表面等离子体共振以及高效等离子体纳米结构(包括等离子体金属纳米结构和金属/半导体异质结构)的近期设计与制备。利用这些等离子体纳米结构,以下要点总结了等离子体驱动的光化学反应(偶联反应、O解离和氧化反应、H解离和氢化反应、N固定和NH分解以及CO还原)和等离子体增强的电催化反应(析氢反应、氧还原反应、析氧反应、醇氧化反应和CO还原)的近期进展。讨论了理解表面等离子体潜在机制的理论和实验方法。最后,对等离子体纳米材料以及等离子体相关化学在能量转换和存储领域中尚存的挑战和未来机遇进行了恰当的讨论并给出了展望。

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