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用于光催化化学转化的超越氰基π共轭无金属聚合物半导体。

Beyond CN π-conjugated metal-free polymeric semiconductors for photocatalytic chemical transformations.

作者信息

Yang Long, Peng Yuting, Luo Xuedan, Dan Yi, Ye Jinhua, Zhou Yong, Zou Zhigang

机构信息

State Key Laboratory of Environment-Friendly Energy Materials, School of Materials Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, Sichuan, P. R. China.

State Key Laboratory of Polymer Materials Engineering of China (Sichuan University), Polymer Research Institute of Sichuan University, Chengdu 610065, P. R. China.

出版信息

Chem Soc Rev. 2021 Feb 15;50(3):2147-2172. doi: 10.1039/d0cs00445f.

Abstract

Photocatalysis with stable, efficient and inexpensive metal-free catalysts is one of the most promising options for non-polluting energy production. This review article covers the state-of-the-art development of various effective metal-free polymeric photocatalysts with large π-conjugated units for chemical transformations including water splitting, CO2 and N2 reduction, organic synthesis and monomer polymerisation. The article starts with the catalytic mechanisms of metal-free photocatalysts. Then a particular focus is on the rational manipulation of π-conjugation enlargement, charge separation, electronic structures and band structures in the design of metal-free polymeric photocatalysts. Following the design principles, the selection and construction of functional units are discussed, as well as the connecting bonds and dimensions of π-conjugated polymeric photocatalysts. Finally the hot and emerging applications of metal-free polymeric photocatalysts for photocatalytic chemical transformations are summarized. The strategies provide potential avenues to address the challenges of catalyst activity, selectivity and stability in the further development of highly effective metal-free polymeric photocatalysts.

摘要

使用稳定、高效且廉价的无金属催化剂进行光催化是无污染能源生产最具前景的选择之一。这篇综述文章涵盖了各种具有大π共轭单元的有效无金属聚合物光催化剂在化学转化方面的最新进展,这些转化包括水分解、二氧化碳和氮气还原、有机合成以及单体聚合。文章首先介绍了无金属光催化剂的催化机理。然后特别关注在无金属聚合物光催化剂设计中对π共轭扩展、电荷分离、电子结构和能带结构的合理调控。遵循设计原则,讨论了功能单元的选择和构建,以及π共轭聚合物光催化剂的连接键和尺寸。最后总结了无金属聚合物光催化剂在光催化化学转化方面的热门新兴应用。这些策略为在高效无金属聚合物光催化剂的进一步发展中应对催化剂活性、选择性和稳定性挑战提供了潜在途径。

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