Gao Zhisheng, Yan Xin, Jia Qi, Zhang Jingru, Guo Guangyao, Li Huanhuan, Li Hui, Xie Gaozhan, Tao Ye, Chen Runfeng
State Key Laboratory of Organic Electronics and Information Displays & Institute of Advanced Materials (IAM), Nanjing University of Posts & Telecommunications, Nanjing, 210023, China.
Songshan Lake Materials Laboratory, Dongguan, Guangdong, 523808, China.
Adv Sci (Weinh). 2024 Nov;11(44):e2410671. doi: 10.1002/advs.202410671. Epub 2024 Oct 8.
Chiral recognition is crucial for applications in chiral purity assessment and biomedical fields. However, achieving chiral recognition through visible room temperature phosphorescence remains challenging. Here, two chiral molecules, designated as host and guest are synthesized, which possess similar structural configurations. A viable strategy involving a chiral configuration-dependent energy transfer process to enable selective phosphorescence expression is proposed, thereby enabling chiral recognition in a host-guest doping system. The chiral and structural similarity between host and guest facilitates efficient Dexter energy transfer due to the reduced spatial distance between the molecules. This mechanism significantly enhances the intensity of red phosphorescence from the guest molecule, characterized by an emission peak at 612 nm and a prolonged lifetime of 32.7 ms. This work elucidates the mechanism of chiral-dependent energy transfer, demonstrating its potential for selectively expressing phosphorescence in chiral recognition.
手性识别对于手性纯度评估和生物医学领域的应用至关重要。然而,通过可见室温磷光实现手性识别仍然具有挑战性。在此,合成了两种手性分子,分别称为主体和客体,它们具有相似的结构构型。提出了一种可行的策略,该策略涉及手性构型依赖的能量转移过程,以实现选择性磷光表达,从而在手性主体-客体掺杂体系中实现手性识别。主体和客体之间的手性和结构相似性由于分子间空间距离的减小而促进了有效的德克斯特能量转移。这种机制显著增强了客体分子红色磷光的强度,其发射峰位于612 nm,寿命延长至32.7 ms。这项工作阐明了手性依赖能量转移的机制,证明了其在手性识别中选择性表达磷光的潜力。