Hubei Key Laboratory of Biomass Fibers and Eco-Dyeing & Finishing, College of Chemistry and Chemical Engineering, Wuhan Textile University, Wuhan 430200, China.
Int J Mol Sci. 2022 Oct 26;23(21):12979. doi: 10.3390/ijms232112979.
Although graphitic carbon nitride (g-CN) has been reported for several decades, it is still an active material at the present time owing to its amazing properties exhibited in many applications, including photocatalysis. With the rapid development of characterization techniques, in-depth exploration has been conducted to reveal and utilize the natural properties of g-CN through modifications. Among these, the assembly of g-CN with metal oxides is an effective strategy which can not only improve electron-hole separation efficiency by forming a polymer-inorganic heterojunction, but also compensate for the redox capabilities of g-CN owing to the varied oxidation states of metal ions, enhancing its photocatalytic performance. Herein, we summarized the research progress on the synthesis of g-CN and its coupling with single- or multiple-metal oxides, and its photocatalytic applications in energy production and environmental protection, including the splitting of water to hydrogen, the reduction of CO to valuable fuels, the degradation of organic pollutants and the disinfection of bacteria. At the end, challenges and prospects in the synthesis and photocatalytic application of g-CN-based composites are proposed and an outlook is given.
虽然石墨相氮化碳(g-CN)已经被报道了几十年,但由于其在许多应用中表现出的惊人性能,包括光催化,它仍然是一种活跃的材料。随着表征技术的快速发展,通过修饰对 g-CN 的自然特性进行了深入的探索和利用。其中,g-CN 与金属氧化物的组装是一种有效的策略,不仅可以通过形成聚合物-无机异质结来提高电子-空穴分离效率,而且由于金属离子的不同氧化态,还可以补偿 g-CN 的氧化还原能力,从而提高其光催化性能。本文总结了 g-CN 的合成及其与单金属或多金属氧化物的耦合及其在能源生产和环境保护中的光催化应用,包括水分解为氢气、CO 还原为有价值的燃料、有机污染物的降解和细菌的消毒。最后,提出了 g-CN 基复合材料的合成和光催化应用中存在的挑战和展望。