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用于可控光催化行为的空心纳米反应器:基本理论、结构-性能关系及催化优势

Hollow Nanoreactors for Controlled Photocatalytic Behaviors: Fundamental Theory, Structure-Performance Relationship, and Catalytic Advantages.

作者信息

Liu Runyu, Yu Zhihao, Zhang Rui, Xiong Jian, Qiao Yina, Liu Xinzhong, Lu Xuebin

机构信息

School of Environmental Science and Engineering, Tianjin University, Tianjin, 300350, P. R. China.

School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin, 300384, P. R. China.

出版信息

Small. 2024 Mar;20(12):e2308142. doi: 10.1002/smll.202308142. Epub 2023 Nov 20.

Abstract

Hollow nanoreactors (HoNRs) have regarded as an attractive catalytic material for photocatalysis due to their exceptional capabilities in enhancing light harvesting, facilitating charge separation and transfer, and optimizing surface reactions. Developing novel HoNRs offers new options to realize controllable catalytic behavior. However, the catalytic mechanism of photocatalysis occurring in HoNRs has not yet been fully revealed. Against this backdrop, this review elaborates on three aspects: 1) the fundamental theoretical insights of HoNRs-driven photocatalytic kinetics; 2) structure-performance relationship of HoNRs to photocatalysis; 3) catalytic advantages of HoNRs in photocatalytic applications. Specifically, the review focuses on the fundamental theories of HoNRs for photocatalysis and their structural advantages for strengthening light scattering, promoting charge separation and transfer, and facilitating surface reaction kinetics, and the relationship between key structural parameters of HoNRs and their photocatalytic performance is in-depth discussed. Also, future prospects and challenges are proposed. It is anticipated that this review paper will pave the way for forthcoming investigations in the realm of HoNRs for photocatalysis.

摘要

中空纳米反应器(HoNRs)因其在增强光捕获、促进电荷分离与转移以及优化表面反应方面的卓越能力,被视为一种有吸引力的光催化催化材料。开发新型HoNRs为实现可控催化行为提供了新的选择。然而,HoNRs中发生的光催化催化机理尚未完全揭示。在此背景下,本综述从三个方面进行阐述:1)HoNRs驱动的光催化动力学的基本理论见解;2)HoNRs与光催化的结构-性能关系;3)HoNRs在光催化应用中的催化优势。具体而言,本综述重点关注HoNRs用于光催化的基本理论及其在增强光散射、促进电荷分离与转移以及促进表面反应动力学方面的结构优势,并深入讨论了HoNRs的关键结构参数与其光催化性能之间的关系。此外,还提出了未来的前景和挑战。预计这篇综述文章将为HoNRs用于光催化领域的后续研究铺平道路。

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