光致聚合物
紫外线
光学活性
紫外线
紫外线辐射
化学
材料科学
光化学
光电子学
有机化学
聚合物
单体
放射化学
作者
Qihuan Li,Suwen Zheng,Wentong Gao,Guo Zou,Yixiang Cheng
标识
DOI:10.1002/ange.202503197
摘要
Abstract Circularly polarized ultraviolet light (CP‐UVL) offers significant potential for practical applications in asymmetric photocatalysis and photopolymerization. However, the development of CP‐UVL‐active materials has been hindered by their low emission dissymmetry factors ( g em ). Here, we present a high‐performance CP‐UVL material for asymmetric photopolymerization, achieved through thermodynamic regulation of a chiral supramolecular assembly. The chiral coassembled enantiomers, R / S ‐BNC/OXD‐7 , are synthesized using the naphthylamine derivative R / S ‐BNC as the chiral donor and OXD‐7 as the achiral acceptor. Upon annealing at different temperatures, OXD‐7 detaches from the chiral coassembly of S ‐BNC/OXD‐7 and then self‐assembles into ordered helical nanostructures, exhibiting temperature‐dependent CP‐UVL ( λ em = 360 nm, with g em up to +0.188). Remarkably, the strong CP‐UVL emission acts as a chiral excitation source, triggering the asymmetric photopolymerization of RM257 (which contains the achiral dye TPABBI and the photoinitiator Irg651 ), resulting in the generation of blue CPL ( λ em = 460 nm, g em = −0.072). This study provides a simple yet effective strategy for designing high‐performance CP‐UVL materials for CPL‐induced asymmetric photopolymerization.
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