Oladipo Akeem Adeyemi, Mustafa Faisal Suleiman
Polymeric Materials Research Laboratory, Chemistry Department, Faculty of Arts and Science, Eastern Mediterranean University, TR North Cyprus, Famagusta, via Mersin 10, Turkey.
Beilstein J Nanotechnol. 2023 Mar 3;14:291-321. doi: 10.3762/bjnano.14.26. eCollection 2023.
A serious threat to human health and the environment worldwide, in addition to the global energy crisis, is the increasing water pollution caused by micropollutants such as antibiotics and persistent organic dyes. Nanostructured semiconductors in advanced oxidation processes using photocatalysis have recently attracted a lot of interest as a promising green and sustainable wastewater treatment method for a cleaner environment. Due to their narrow bandgaps, distinctive layered structures, plasmonic, piezoelectric and ferroelectric properties, and desirable physicochemical features, bismuth-based nanostructure photocatalysts have emerged as one of the most prominent study topics compared to the commonly used semiconductors (TiO and ZnO). In this review, the most recent developments in the use of photocatalysts based on bismuth (e.g., BiFeO, BiMoO, BiVO, BiWO, BiS) to remove dyes and antibiotics from wastewater are thoroughly covered. The creation of Z-schemes, Schottky junctions, and heterojunctions, as well as morphological modifications, doping, and other processes are highlighted regarding the fabrication of bismuth-based photocatalysts with improved photocatalytic capabilities. A discussion of general photocatalytic mechanisms is included, along with potential antibiotic and dye degradation pathways in wastewater. Finally, areas that require additional study and attention regarding the usage of photocatalysts based on bismuth for removing pharmaceuticals and textile dyes from wastewater, particularly for real-world applications, are addressed.
除了全球能源危机之外,抗生素和持久性有机染料等微污染物造成的水污染日益严重,这对全球人类健康和环境构成了严重威胁。利用光催化的高级氧化过程中的纳米结构半导体,作为一种有前景的绿色可持续废水处理方法,最近引起了广泛关注,旨在实现更清洁的环境。由于其窄带隙、独特的层状结构、等离子体、压电和铁电特性以及理想的物理化学特性,与常用半导体(TiO和ZnO)相比,铋基纳米结构光催化剂已成为最突出的研究课题之一。在本综述中,全面涵盖了基于铋的光催化剂(如BiFeO、BiMoO、BiVO、BiWO、BiS)用于去除废水中染料和抗生素的最新进展。关于制备具有改进光催化能力的铋基光催化剂,重点介绍了Z型、肖特基结和异质结的构建,以及形态修饰、掺杂等过程。还讨论了一般的光催化机理,以及废水中潜在的抗生素和染料降解途径。最后,探讨了在利用铋基光催化剂从废水中去除药物和纺织染料方面,特别是在实际应用中,需要进一步研究和关注的领域。