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光催化在有机和聚合物合成中的应用。

Photocatalysis in organic and polymer synthesis.

机构信息

Centre for Advanced Macromolecular Design (CAMD), School of Chemical Engineering, UNSW Australia, Sydney, NSW 2052, Australia.

出版信息

Chem Soc Rev. 2016 Nov 7;45(22):6165-6212. doi: 10.1039/c6cs00185h.

Abstract

This review, with over 600 references, summarizes the recent applications of photoredox catalysis for organic transformation and polymer synthesis. Photoredox catalysts are metallo- or organo-compounds capable of absorbing visible light, resulting in an excited state species. This excited state species can donate or accept an electron from other substrates to mediate redox reactions at ambient temperature with high atom efficiency. These catalysts have been successfully implemented for the discovery of novel organic reactions and synthesis of added-value chemicals with an excellent control of selectivity and stereo-regularity. More recently, such catalysts have been implemented by polymer chemists to post-modify polymers in high yields, as well as to effectively catalyze reversible deactivation radical polymerizations and living polymerizations. These catalysts create new approaches for advanced organic transformation and polymer synthesis. The objective of this review is to give an overview of this emerging field to organic and polymer chemists as well as materials scientists.

摘要

这篇综述引用了超过 600 篇参考文献,总结了光氧化还原催化在有机转化和聚合物合成中的最新应用。光氧化还原催化剂是能够吸收可见光的金属或有机化合物,导致产生激发态物种。这种激发态物种可以从其他底物中得失电子,在环境温度下以高原子效率介导氧化还原反应。这些催化剂已成功应用于发现新的有机反应和合成附加值化学品,具有出色的选择性和立体规整性控制。最近,聚合物化学家也将这些催化剂用于高产率地对聚合物进行后修饰,以及有效地催化可逆失活自由基聚合和活性聚合。这些催化剂为先进的有机转化和聚合物合成创造了新的方法。本综述的目的是为有机和聚合物化学家以及材料科学家概述这一新兴领域。

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