Graphitic carbon nitride materials: variation of structure and morphology and their use as metal-free catalysts

氮化碳 材料科学 氮化物 聚合 催化作用 石墨氮化碳 介孔材料 化学工程 纳米结构 金属 碳纤维 聚合物 纳米技术 化学 有机化学 复合数 复合材料 光催化 冶金 工程类 图层(电子)
作者
Arne Thomas,Anna Fischer,Frédéric Goettmann,Markus Antonietti,J.-O. Müller,Robert Schlögl,Johan M. Carlsson
出处
期刊:Journal of Materials Chemistry [Royal Society of Chemistry]
卷期号:18 (41): 4893-4893 被引量:3160
标识
DOI:10.1039/b800274f
摘要

Graphitic carbon nitride, g-C3N4, can be made by polymerization of cyanamide, dicyandiamide or melamine. Depending on reaction conditions, different materials with different degrees of condensation, properties and reactivities are obtained. The firstly formed polymeric C3N4 structure, melon, with pendant amino groups, is a highly ordered polymer. Further reaction leads to more condensed and less defective C3N4 species, based on tri-s-triazine (C6N7) units as elementary building blocks. High resolution transmission electron microscopy proves the extended two-dimensional character of the condensation motif. Due to the polymerization-type synthesis from a liquid precursor, a variety of material nanostructures such as nanoparticles or mesoporous powders can be accessed. Those nanostructures also allow fine tuning of properties, the ability for intercalation, as well as the possibility to give surface-rich materials for heterogeneous reactions. Due to the special semiconductor properties of carbon nitrides, they show unexpected catalytic activity for a variety of reactions, such as for the activation of benzene, trimerization reactions, and also the activation of carbon dioxide. Model calculations are presented to explain this unusual case of heterogeneous, metal-free catalysis. Carbon nitride can also act as a heterogeneous reactant, and a new family of metal nitride nanostructures can be accessed from the corresponding oxides.
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