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具有光子晶体结构的交联石墨相氮化碳用于高效可见光驱动光催化。

Cross-Linked Graphitic Carbon Nitride with Photonic Crystal Structure for Efficient Visible-Light-Driven Photocatalysis.

机构信息

Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Guangdong Engineering Technology Research Center for High-Performance Organic and Polymer Photoelectric Functional Films, School of Chemistry, Sun Yat-sen University , Guangzhou 510275, China.

出版信息

ACS Appl Mater Interfaces. 2017 Dec 27;9(51):44503-44511. doi: 10.1021/acsami.7b14359. Epub 2017 Dec 18.

Abstract

Highly cross-linked graphitic carbon nitride has been prepared by a thermal copolymerization of dicyanodiamide with tetramethylammonium salts. The cross-linking can be evidenced by (i) increased C/N ratio without new carbon species, (ii) decreased specific surface area, and (iii) Tyndall effect after dissolution in concentrated sulfuric acid. The cross-linked graphitic carbon nitride with photonic crystal structure has highly efficient photocatalytic activity for water splitting under visible light due to the synergistic enhancement by the greatly suppressed photoluminescence, red-shifted absorption edges, strong inner reflections, and effective PCs stop band overlaps. It exhibits an enhanced photodegradation kinetic of methyl orange and a high visible-light-driven hydrogen-evolution rate of 166.9 μmol h (25 times higher than that of the pristine graphitic carbon nitride counterpart). This work presents a facile method for designing and developing high-performance graphitic carbon nitride photocatalysts, providing a broad range of application prospects in the fields of electronics and energy conversion.

摘要

高交联石墨相氮化碳是通过二氰二胺与季铵盐的热共聚反应制备的。交联可以通过以下方式证明:(i)没有新的碳物种,C/N 比增加;(ii)比表面积减小;(iii)在浓硫酸中溶解后的丁达尔效应。具有光子晶体结构的交联石墨相氮化碳由于光致发光大大抑制、吸收边缘红移、强内反射和有效的 PCs 禁带重叠协同增强,在可见光下具有高效的水分解光催化活性。它表现出增强的甲基橙光降解动力学和高达 166.9 μmol h 的可见光驱动的氢析出率(比原始石墨相氮化碳对应物高 25 倍)。这项工作为设计和开发高性能石墨相氮化碳光催化剂提供了一种简便的方法,为电子和能量转换领域提供了广泛的应用前景。

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