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用于增强光催化性能的g-CN和碳点的高效组合:合成、策略及应用综述

Efficient Combination of G-C N and CDs for Enhanced Photocatalytic Performance: A Review of Synthesis, Strategies, and Applications.

作者信息

Ai Lin, Shi Run, Yang Jie, Zhang Kan, Zhang Tierui, Lu Siyu

机构信息

Green Catalysis Center, College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.

Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

出版信息

Small. 2021 Dec;17(48):e2007523. doi: 10.1002/smll.202007523. Epub 2021 Mar 8.

Abstract

Recently, heterogeneous photocatalysts have achieved much interest on account of their great potential applications in resolving many tough energy and environmental troubles around the world through an ecologically sustainable way. Heterogeneous nanocomposites composed of graphitic carbon nitride (g-C N ) and carbon dots (CDs) possess broad spectrum absorption, appropriate electronic band structures, rapid carrier mobility, abundant reserves, excellent chemical stability, and facile synthesis methods, which make them promising composite photocatalysts for suitable applications such as photocatalytic solar fuels production and contaminant decomposition. With the rapid development in photocatalysis by hybridization of g-C N and CDs, a systematic summary and prospection of performance improvement are urgent and meaningful. This review first focuses on various kinds of effectively synthetic methods of composites. Following, the strategies available for enhanced performance, including morphology optimization, spectral absorption improvement, ternary or quaternary composition hybrid, lateral or vertical heterostructures construction, heteroatom doping, and so forth, are fully discussed. Then, the applications mainly in efficient photocatalytic hydrogen generation, photocatalytic carbon dioxide reduction, and organic pollutants degradation are systematically demonstrated. Finally, the remaining issues and prospect of further development are proposed as some kind of guidance for powerful combination of g-C N and CDs with high efficiency to photocatalysis.

摘要

近年来,多相光催化剂因其在以生态可持续方式解决全球诸多棘手的能源和环境问题方面的巨大潜在应用而备受关注。由石墨相氮化碳(g-C₃N₄)和碳点(CDs)组成的多相纳米复合材料具有光谱吸收范围广、电子能带结构合适、载流子迁移速度快、储量丰富、化学稳定性优异以及合成方法简便等优点,这使其成为用于光催化太阳能燃料生产和污染物分解等合适应用的有前景的复合光催化剂。随着g-C₃N₄与CDs杂化光催化的迅速发展,对性能提升进行系统总结和展望既紧迫又有意义。本综述首先聚焦于复合材料的各种有效合成方法。随后,全面讨论了可用于提高性能的策略,包括形态优化、光谱吸收改善、三元或四元组成杂化、横向或垂直异质结构构建、杂原子掺杂等。然后,系统展示了其主要在高效光催化产氢、光催化二氧化碳还原和有机污染物降解方面的应用。最后,提出了剩余问题和进一步发展的前景,为g-C₃N₄与CDs高效结合用于光催化提供某种指导。

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