Khan Mohammad Ehtisham
Department of Chemical Engineering Technology, College of Applied Industrial Technology (CAIT), Jazan University Jazan 45971 Kingdom of Saudi Arabia
Nanoscale Adv. 2021 Mar 2;3(7):1887-1900. doi: 10.1039/d1na00041a. eCollection 2021 Apr 6.
The rapid progress of state-of-the-art carbon-based metals as a catalyst is playing a central role in the research area of chemical and materials engineering for effective visible-light-induced catalytic applications. Numerous admirable catalysts have been fabricated, but significant challenges persist to lower the cost and increase the action of catalysts. The development of carbon-based nanostructured materials (, activated carbon, carbon nitride, graphite, fullerenes, carbon nanotubes, diamond, graphene, ) represents an admirable substitute to out-of-date catalysts. Significant efforts have been made by researchers toward the improvement of various carbon-based metal nanostructures as catalysts. Moreover, incredible development has been achieved in several fields of catalysis, such as visible-light-induced catalysis, electrochemical performance, energy storage, and conversion, This review gives an overview of the up-to-date developments in the strategy of design and fabrication of carbon-based metal nanostructures as photo-catalysts by means of several methods within the green approach, including chemical synthesis, growth, solution mixing, and hydrothermal approaches. Moreover, the photocatalytic effects of the resulting carbon-based nanostructure classifications are similarly deliberated relative to their eco-friendly applications, such as photocatalytic degradation of organic dye pollutants.
作为一种催化剂,最先进的碳基金属的快速发展在化学和材料工程研究领域中对于有效的可见光诱导催化应用起着核心作用。已经制备了许多令人钦佩的催化剂,但在降低成本和提高催化剂活性方面仍然存在重大挑战。碳基纳米结构材料(活性炭、氮化碳、石墨、富勒烯、碳纳米管、金刚石、石墨烯等)的发展代表了对过时催化剂的一种令人钦佩的替代。研究人员为改进各种碳基金属纳米结构作为催化剂做出了巨大努力。此外,在催化的几个领域,如可见光诱导催化、电化学性能、能量存储和转换等方面也取得了令人难以置信的进展。本综述概述了通过绿色方法中的几种方法,包括化学合成、生长、溶液混合和水热法等,设计和制备碳基金属纳米结构作为光催化剂的最新进展。此外,还讨论了所得碳基纳米结构分类相对于其生态友好应用(如有机染料污染物的光催化降解)的光催化效果。