化学
共轭体系
手性(物理)
发光
分子内力
分子
联苯
轴手性
极化率
光化学
化学物理
立体化学
材料科学
光电子学
有机化学
聚合物
物理
对映选择合成
手征对称破缺
量子力学
Nambu–Jona Lasinio模型
催化作用
夸克
作者
Pingchuan Shen,Shaoshao Jiao,Zeyan Zhuang,Xiaobin Dong,Shaoxin Song,Jinshi Li,Ben Zhong Tang,Zujin Zhao
标识
DOI:10.1002/anie.202407605
摘要
Abstract Organic materials with switchable dual circularly polarized luminescence (CPL) are highly desired because they can not only directly radiate tunable circularly polarized light themselves but also induce CPL for guests by providing a chiral environment in self‐assembled structures or serving as the hosts for energy transfer systems. However, most organic molecules only exhibit single CPL and it remains challenging to develop organic molecules with dual CPL. Herein, novel through‐space conjugated chiral foldamers are constructed by attaching two biphenyl arms to the 9,10‐positions of phenanthrene, and switchable dual CPL with opposite signs at different emission wavelengths are successfully realized in the foldamers containing high‐polarizability substitutes (cyano, methylthiol and methylsulfonyl). The combined experimental and computational results demonstrate that the intramolecular through‐space conjugation has significant contributions to stabilizing the folded conformations. Upon photoexcitation in high‐polar solvents, strong interactions between the biphenyl arms substituted with cyano, methylthio or methylsulfonyl and the polar environment induce conformation transformation for the foldamers, resulting in two transformable secondary structures of opposite chirality, accounting for the dual CPL with opposite signs. These findings highlight the important influence of the secondary structures on the chiroptical property of the foldamers and pave a new avenue towards efficient and tunable dual CPL materials.
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