Khan Mohammad Mansoob, Rahman Ashmalina, Matussin Shaidatul Najihah
Chemical Sciences, Faculty of Science, Universiti Brunei Darussalam, Jalan Tungku Link, Gadong BE 1410, Brunei.
Nanomaterials (Basel). 2022 Aug 17;12(16):2820. doi: 10.3390/nano12162820.
In the field of photocatalysis, metal-organic frameworks (MOFs) have drawn a lot of attention. MOFs have a number of advantages over conventional semiconductors, including high specific surface area, large number of active sites, and an easily tunable porous structure. In this perspective review, different synthesis methods used to prepare MOFs and MOFs-based heterostructures have been discussed. Apart from this, the application of MOFs and MOFs-based heterostructures as photocatalysts for photocatalytic degradation of different types of pollutants have been compiled. This paper also highlights the different strategies that have been developed to modify and regulate pristine MOFs for improved photocatalytic performance. The MOFs modifications may result in better visible light absorption, effective photo-generated charge carriers (e/h), separation and transfer as well as improved recyclability. Despite that, there are still many obstacles and challenges that need to be addressed. In order to meet the requirements of using MOFs and MOFs-based heterostructures in photocatalysis for low-cost practical applications, future development and prospects have also been discussed.
在光催化领域,金属有机框架材料(MOFs)已引起广泛关注。与传统半导体相比,MOFs具有许多优势,包括高比表面积、大量活性位点以及易于调节的多孔结构。在这篇综述中,讨论了用于制备MOFs及基于MOFs的异质结构的不同合成方法。除此之外,还汇总了MOFs及基于MOFs的异质结构作为光催化剂用于光催化降解不同类型污染物的应用。本文还重点介绍了为改善光催化性能而开发的用于修饰和调控原始MOFs的不同策略。对MOFs的修饰可能会带来更好的可见光吸收、有效的光生载流子(电子/空穴)分离与转移以及提高的可回收性。尽管如此,仍有许多障碍和挑战需要解决。为了满足在光催化中使用MOFs及基于MOFs的异质结构进行低成本实际应用的要求,还讨论了未来的发展和前景。