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用于光解水制氢的半导体纳米材料光催化剂:将太阳能转化为燃料的圣杯。

Semiconductor Nanomaterial Photocatalysts for Water-Splitting Hydrogen Production: The Holy Grail of Converting Solar Energy to Fuel.

作者信息

Mohsin Muhammad, Ishaq Tehmeena, Bhatti Ijaz Ahmad, Jilani Asim, Melaibari Ammar A, Abu-Hamdeh Nidal H

机构信息

Department of Chemistry, University of Agriculture Faisalabad, Faisalabad 38040, Pakistan.

Department of Chemistry, University of Lahore, Sargodha Campus, Sargodha 40100, Pakistan.

出版信息

Nanomaterials (Basel). 2023 Jan 29;13(3):546. doi: 10.3390/nano13030546.

Abstract

Nanomaterials have attracted attention for application in photocatalytic hydrogen production because of their beneficial properties such as high specific surface area, attractive morphology, and high light absorption. Furthermore, hydrogen is a clean and green source of energy that may help to resolve the existing energy crisis and increasing environmental pollution caused by the consumption of fossil fuels. Among various hydrogen production methods, photocatalytic water splitting is most significant because it utilizes solar light, a freely available energy source throughout the world, activated via semiconductor nanomaterial catalysts. Various types of photocatalysts are developed for this purpose, including carbon-based and transition-metal-based photocatalysts, and each has its advantages and disadvantages. The present review highlights the basic principle of water splitting and various techniques such as the thermochemical process, electrocatalytic process, and direct solar water splitting to enhance hydrogen production. Moreover, modification strategies such as band gap engineering, semiconductor alloys, and multiphoton photocatalysts have been reviewed. Furthermore, the Z- and S-schemes of heterojunction photocatalysts for water splitting were also reviewed. Ultimately, the strategies for developing efficient, practical, highly efficient, and novel visible-light-harvesting photocatalysts will be discussed, in addition to the challenges that are involved. This review can provide researchers with a reference for the current state of affairs, and may motivate them to develop new materials for hydrogen generation.

摘要

纳米材料因其高比表面积、吸引人的形态和高光吸收等有益特性,在光催化制氢应用中受到关注。此外,氢是一种清洁绿色的能源,有助于解决现有的能源危机以及因化石燃料消耗导致的环境污染加剧问题。在各种制氢方法中,光催化水分解最为重要,因为它利用太阳光(一种全球范围内可免费获取的能源),通过半导体纳米材料催化剂进行激活。为此开发了各种类型的光催化剂,包括碳基和过渡金属基光催化剂,每种都有其优缺点。本综述重点介绍了水分解的基本原理以及各种技术,如热化学过程、电催化过程和直接太阳能水分解以提高产氢量。此外,还综述了诸如带隙工程、半导体合金和多光子光催化剂等改性策略。此外,还对用于水分解的异质结光催化剂的Z型和S型方案进行了综述。最后,除了所涉及的挑战外,还将讨论开发高效、实用、高效和新型可见光捕获光催化剂的策略。本综述可为研究人员提供当前状况的参考,并可能激励他们开发用于制氢的新材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af2e/9921879/baf6f80b168e/nanomaterials-13-00546-g003.jpg

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