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用于光催化交叉偶联脱氢反应的咔唑基人工光捕获系统。

Carbazole-based artificial light-harvesting system for photocatalytic cross-coupling dehydrogenation reaction.

作者信息

Sun Guangping, Li Menghang, Cai Lijuan, Zhu Jinli, Tang Yanfeng, Yao Yong

机构信息

School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, China.

出版信息

Chem Commun (Camb). 2024 Feb 1;60(11):1412-1415. doi: 10.1039/d3cc05405e.

Abstract

A carbazole-based artificial light-harvesting system (LHS) was successfully fabricated based on the supramolecular assembly of AIE-enhanced donor (CTD), water-soluble phosphate-pillar[5]arene (WPP5), and eosin Y (ESY) acceptor. The formed WPP5-CTD possessed remarkable AIE emission, featuring an ideal energy donor for light harvesting. After encapsulation of ESY, the energy of WPP5-CTD was efficiently transferred to ESY in WPP5-CTD-ESY, and the antenna effect was 38.5, which was much higher than that of recently reported LHSs. Notably, WPP5-CTD-ESY was successfully utilized as a photocatalyst to realize the cross-coupling dehydrogenation reaction of diphenylphosphine oxide and benzothiazole derivatives, suggesting great potential for aqueous photocatalytic applications of this LHS.

摘要

基于具有聚集诱导发光增强特性的供体(CTD)、水溶性磷酸柱[5]芳烃(WPP5)和曙红Y(ESY)受体的超分子组装,成功构建了一种咔唑基人工光捕获体系(LHS)。形成的WPP5-CTD具有显著的聚集诱导发光特性,是用于光捕获的理想能量供体。在封装ESY后,WPP5-CTD的能量在WPP5-CTD-ESY中有效地转移到ESY,其天线效应为38.5,远高于最近报道的LHSs。值得注意的是,WPP5-CTD-ESY成功用作光催化剂,实现了二苯基氧化膦与苯并噻唑衍生物的交叉偶联脱氢反应,表明该LHS在水性光催化应用中具有巨大潜力。

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