Fabrication of p-type silicon nanowire array based photoelectrodes for the efficient photoelectrocatalytic reduction of CO2 to fuels and chemicals

IF 5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
Longfu Wei, Rongxing Li, Qizhe Fan, Changlin Yu and Peng Tan
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Abstract

With the decrease of fossil resources and the large amount of CO2 emissions, research on the preparation of fuels and chemicals using CO2 has attracted wide attention. The efficient activation of CO2, as an extremely stable small molecule, is one of the most challenging scientific problems in chemistry. The photoelectrocatalytic reduction of CO2 is based on solar energy and water as energy and electron sources, respectively. It is an effective means to prepare renewable fuels, namely, artificial photosynthesis, which is one of the ideal ways to realize the resource utilization of CO2. The p-type silicon nanowire arrays (SiNWs) have a potential application value for photocathode materials due to their excellent performance, such as the photoelectric effect, high surface activity, high electron transport characteristics, high stability and so on. This review focuses on the design and fabrication of SiNW based photoelectrodes and their recent progress for the efficient photoelectrocatalytic reduction of CO2 to fuels and chemicals. The typical reaction modes (photocathode mode, photoanode mode and double light electrode mode) for the photoelectrocatalytic reduction of CO2 are presented and analyzed. Furthermore, the preparation methods of SiNWs, such as the laser ablation, chemical vapor deposition (CVD) and metal-assisted chemical etching method, are also discussed, especially, the metal-assisted chemical etching method. The photoelectrocatalytic activity of pure SiNWs, anchoring metal nanoparticle cocatalysts (monometal and double metal structures), anchoring metal complex cocatalysts, anchoring non-metal nanoparticle cocatalysts and combining a photoanode with photocathode, are summarized and analyzed. Future prospects will be addressed in the last part. This review aims to provide deep insights into the rational design of efficient photoelectrodes for the photoelectrocatalytic reduction of CO2 to fuels and chemicals, achieving the carbon peak and carbon neutral goals as soon as possible.

Abstract Image

基于p型硅纳米线阵列的光电极的制造,用于有效的光电催化将二氧化碳还原为燃料和化学品
随着化石资源的减少和二氧化碳的大量排放,利用二氧化碳制备燃料和化学品的研究受到了广泛的关注。二氧化碳作为一种极其稳定的小分子,其高效活化是化学领域最具挑战性的科学问题之一。CO2的光电催化还原分别以太阳能和水为能源和电子源。它是制备可再生燃料的有效手段,即人工光合作用,是实现CO2资源化利用的理想途径之一。p型硅纳米线阵列(SiNWs)具有光电效应好、表面活性高、电子输运特性好、稳定性高等优异性能,在光电阴极材料中具有潜在的应用价值。本文综述了基于SiNW的光电极的设计和制备及其在高效光电催化还原CO2为燃料和化学品方面的最新进展。提出并分析了光电催化还原CO2的典型反应模式(光电阴极模式、光电阳极模式和双光电极模式)。此外,还讨论了激光烧蚀、化学气相沉积(CVD)和金属辅助化学蚀刻等SiNWs的制备方法,特别是金属辅助化学蚀刻方法。总结和分析了纯SiNWs、锚定金属纳米粒子共催化剂(单金属和双金属结构)、锚定金属络合物共催化剂、锚定非金属纳米粒子共催化剂和光阳极与光电阴极结合的光电催化活性。最后一部分将对未来进行展望。本文旨在为光电催化还原CO2为燃料和化学品,尽快实现碳峰值和碳中和目标的高效光电极的合理设计提供深入的见解。
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来源期刊
Sustainable Energy & Fuels
Sustainable Energy & Fuels Energy-Energy Engineering and Power Technology
CiteScore
10.00
自引率
3.60%
发文量
394
期刊介绍: Sustainable Energy & Fuels will publish research that contributes to the development of sustainable energy technologies with a particular emphasis on new and next-generation technologies.
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