Institute of Molecular Plus, Tianjin University, 92 Weijin Road, Nankai District, Tianjin, 300072, P. R. China.
Institute of Materials Research and Engineering, A*STAR, 2 Fusionopolis Way, Singapore, 138634, Singapore.
Chem Asian J. 2021 Oct 18;16(20):3038-3054. doi: 10.1002/asia.202100762. Epub 2021 Sep 2.
As a promising technique to potentially address the energy crisis and environmental issues, photocatalysis has been reported widely to exhibit various outstanding behaviors in production of new fuels/chemicals and treatment of contaminants. The photocatalytic performance is extremely dependent on the used photocatalysts, so that the design and preparation of efficient photocatalysts are critically important for significantly improving the photocatalytic activity. Among various strategies, the hybridization of metal with semiconductors has recently been attracting more and more research interest owing to their expended spectral absorption, promoted transferring rate of charge carriers and Plasmon-enhanced effect. In this minireview, the metal-facilitated hybrid photocatalysts are overviewed comprehensively to first reveal unique functions of metals in improvement of photoactivity and summarize the emerging metal-involved hybrid systems. Subsequently, the synthetic methods towards hybrid photocatalysts are introduced and their practical applications are emphasized in environmental remediation including degradation of organic pollutants, conversion of harmful gases, treatment of heavy metal ions and sterilization of bacteria. At the end, the challenges for industrializing these hybrid photocatalysts are discussed carefully and future development is suggested rationally.
作为一种有潜力解决能源危机和环境问题的有前途的技术,光催化在生产新能源/化学品和处理污染物方面表现出了各种卓越的性能,已被广泛报道。光催化性能极大地依赖于所使用的光催化剂,因此,设计和制备高效的光催化剂对于显著提高光催化活性至关重要。在各种策略中,由于其扩展的光谱吸收、促进载流子转移速率和等离子体增强效应,金属与半导体的杂交最近引起了越来越多的研究兴趣。在这篇综述中,全面综述了金属促进的杂化光催化剂,首先揭示了金属在提高光活性方面的独特功能,并总结了新兴的金属参与的杂化体系。随后,介绍了杂化光催化剂的合成方法,并强调了它们在环境修复中的实际应用,包括有机污染物的降解、有害气体的转化、重金属离子的处理和细菌的杀菌。最后,仔细讨论了将这些杂化光催化剂产业化所面临的挑战,并合理地提出了未来的发展方向。