Ye Jun-Qing, Xu Shu-Ying, Liang Qian, Dai Yan-Zi, He Ming-Yang
Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, School of Petrochemical Engineering, Changzhou University, Changzhou, 213164, P. R. China.
Chem Asian J. 2024 May 17;19(10):e202400161. doi: 10.1002/asia.202400161. Epub 2024 Apr 17.
Harnessing low-density solar energy and converting it into high-density chemical energy through photocatalysis has emerged as a promising avenue for the production of chemicals and remediation of environmental pollution, which contributes to alleviating the overreliance on fossil fuels. In recent years, metal-organic frameworks (MOFs) have gained widespread application in the field of photocatalysis due to their photostability, tunable structures, and responsiveness in the visible light range. However, most MOFs exhibit relatively low response to light, limiting their practical applications. MOFs-derived nanomaterials not only retain the inherent advantages of pristine MOFs but also show enhanced light adsorption and responsiveness. This review categorizes and summarizes MOFs-derived nanomaterials, including nanocarbons and nanometal oxides, providing representative examples for the synthetic strategies of each category. Subsequently, the recent research progress on MOFs-derived materials in photocatalytic applications are systematically introduced, specifically in the areas of photocatalytic water splitting to H, photocatalytic CO reduction, and photocatalytic water treatment. The corresponding mechanisms involved in each photocatalytic reaction are elaborated in detail. Finally, the review discusses the challenges and further directions faced by MOFs-derived nanomaterials in the field of photocatalysis, highlighting their potential role in advancing sustainable energy production and environmental remediation.
利用低密度太阳能并通过光催化将其转化为高密度化学能,已成为生产化学品和治理环境污染的一条有前景的途径,这有助于减轻对化石燃料的过度依赖。近年来,金属有机框架(MOF)因其光稳定性、可调节结构以及在可见光范围内的响应性,在光催化领域得到了广泛应用。然而,大多数MOF对光的响应相对较低,限制了它们的实际应用。MOF衍生的纳米材料不仅保留了原始MOF的固有优势,还表现出增强的光吸附和响应性。本综述对MOF衍生的纳米材料进行了分类和总结,包括纳米碳和纳米金属氧化物,并为每一类的合成策略提供了代表性实例。随后,系统介绍了MOF衍生材料在光催化应用方面的最新研究进展,特别是在光催化水分解制氢、光催化CO还原和光催化水处理等领域。详细阐述了每个光催化反应所涉及的相应机制。最后,本综述讨论了MOF衍生的纳米材料在光催化领域面临的挑战和进一步发展方向,突出了它们在推进可持续能源生产和环境修复方面的潜在作用。