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用于能量转换与存储的多孔硅负载催化材料

Porous Silicon-Supported Catalytic Materials for Energy Conversion and Storage.

作者信息

Wang Man, Ou Wei-Cheng, Yu Zhen-Tao

机构信息

National Laboratory of Solid State Microstructures and Jiangsu Provincial Key Laboratory for Nanotechnology, College of Engineering and Applied Sciences, Nanjing University, 210093, Nanjing, China.

出版信息

ChemSusChem. 2025 Feb 1;18(3):e202401459. doi: 10.1002/cssc.202401459. Epub 2024 Nov 21.

Abstract

Porous silicon (Si) has a tetrahedral structure similar to that of sp-hybridized carbon atoms in a typical diamond structure, which affords it unique chemical and physical properties including an adjustable intrinsic bandgap, a high-speed carrier transfer efficiency. It has shown great potential in photocatalysis, rechargeable batteries, solar cells, detectors, and electrocatalysis. This review introduces various porous Si-supported electrocatalysts and analyzes the reasons why porous Si is used as a new carrier/active sites from the perspectives of its molecular structure, electronic properties, synthesis methods, etc. The electrochemical applications of porous Si-based electrocatalysts in energy conversion reactions such as hydrogen evolution reaction, oxygen evolution reaction, oxygen reduction reaction, and total water decomposition together with lithium-ion battery and supercapacitor in energy storage are summarized. The challenges and future research directions for porous Si are also discussed. This review aims to deepen the understanding of porous Si and promote the development and applications of this new type of Si material.

摘要

多孔硅(Si)具有类似于典型金刚石结构中sp杂化碳原子的四面体结构,这赋予了它独特的化学和物理性质,包括可调节的本征带隙、高速载流子转移效率。它在光催化、可充电电池、太阳能电池、探测器和电催化方面显示出巨大潜力。本文综述介绍了各种多孔硅负载的电催化剂,并从其分子结构、电子性质、合成方法等角度分析了多孔硅被用作新型载体/活性位点的原因。总结了多孔硅基电催化剂在析氢反应、析氧反应、氧还原反应和全水分解等能量转换反应以及锂离子电池和超级电容器储能方面的电化学应用。还讨论了多孔硅面临的挑战和未来的研究方向。本文综述旨在加深对多孔硅的理解,促进这种新型硅材料的开发和应用。

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