Sun Guangping, Li Menghang, Cai Lijuan, Zhu Jinli, Tang Yanfeng, Yao Yong
School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, China.
Chem Commun (Camb). 2024 Feb 1;60(11):1412-1415. doi: 10.1039/d3cc05405e.
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.
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。