手性(物理)
发光
镧系元素
超分子化学
连接器
超分子手性
材料科学
圆二色性
圆极化
纳米技术
位阻效应
结晶学
金属有机骨架
轴手性
立体化学
光化学
化学
模块化设计
组合化学
螯合作用
光电子学
脚手架
配位复合体
作者
Fu‐Jia Song,Kai Wang,Xiang‐Yuan Yan,Kai Cui,Nan Song,Xuefeng Zhu,Chun‐Hua Yan,Pingru Su,Yu Tang
摘要
ABSTRACT Integrating achiral luminophores into chiral supramolecular helices represents a promising route to strong circularly polarized luminescence (CPL). However, for lanthanide systems, efficient emitter loading and effective chirality induction remain challenging due to weak host–guest interactions and the shielded nature of 4f electrons. Herein, we report a supramolecular chelation strategy that implants Eu 3+ emitters into pre‑assembled helical nanoribbons (HNRs), enabling efficient chirality induction and tunable CPL brightness. Two cholesterol–terpyridine conjugates, differing only in their linker chemistry (ester vs. carbonate), demonstrate that the ester linker promotes long‑range chirality induction and HNR formation, whereas the carbonate counterpart yields achiral aggregates. Moreover, the assembly sequence is crucial: pre‑formation of the helical scaffold preserves the non‑covalent network necessary for effective chirality induction, whereas prior metal coordination introduces steric hindrance that disrupts chiral order. The resulting systems exhibit orthogonal luminescence responses: Eu 3+ ‑loaded assemblies are humidity‑sensitive but thermally stable, while β ‑diketonate‑shielded analogues are temperature‑responsive yet humidity‑resistant, allowing multi‑level information encryption. By introducing this modular “assemble‑then‑coordinate” approach, we provide new insights into supramolecular chirality induction and open avenues toward advanced, stimulus‑responsive CPL materials.
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