Key Laboratory of Catalysis and Materials Science of the State Ethnic Affairs & Commission Ministry of Education, South-Central University for Nationalities , Wuhan 430074, China.
ACS Appl Mater Interfaces. 2014 Oct 8;6(19):16449-65. doi: 10.1021/am502925j. Epub 2014 Sep 26.
Graphitic carbon nitride, g-C3N4, is a polymeric material consisting of C, N, and some impurity H, connected via tris-triazine-based patterns. Compared with the majority of carbon materials, it has electron-rich properties, basic surface functionalities and H-bonding motifs due to the presence of N and H atoms. It is thus regarded as a potential candidate to complement carbon in material applications. In this review, a brief introduction to g-C3N4 is given, the methods used for synthesizing this material with different textural structures and surface morphologies are described, and its physicochemical properties are referred. In addition, four aspects of the applications of g-C3N4 in catalysis are discussed: (1) as a base metal-free catalyst for NO decomposition, (2) as a reference material in differentiating oxygen activation sites for oxidation reactions over supported catalysts, (3) as a functional material to synthesize nanosized metal particles, and (4) as a metal-free catalyst for photocatalysis. The reasons for the use of g-C3N4 for such applications are also given, and we expect that this paper will inspire readers to search for further new applications for this material in catalysis and in other fields.
石墨相氮化碳(g-C3N4)是一种由 C、N 和一些杂质 H 通过三嗪基连接而成的聚合物材料。与大多数碳材料相比,由于 N 和 H 原子的存在,g-C3N4 具有富电子特性、碱性表面官能团和氢键模式,因此被认为是一种潜在的碳材料补充物。在这篇综述中,简要介绍了 g-C3N4,描述了用于合成具有不同织构结构和表面形貌的 g-C3N4 的方法,并提到了其物理化学性质。此外,还讨论了 g-C3N4 在催化中的四个应用方面:(1)作为一种无金属基催化剂用于 NO 分解,(2)作为用于氧化反应中负载型催化剂上氧活化位区分的参考材料,(3)作为合成纳米金属颗粒的功能材料,以及(4)作为用于光催化的无金属催化剂。还给出了使用 g-C3N4 进行这些应用的原因,我们希望本文能够激发读者在催化及其他领域寻找该材料的更多新应用。