液晶
发光
材料科学
掺杂剂
光致发光
超分子化学
分子间力
手性(物理)
兴奋剂
结晶学
光化学
圆二色性
光电子学
化学物理
晶体结构
圆极化
超分子手性
分子
衍生工具(金融)
Crystal(编程语言)
作者
Xiaofang Peng,Yanji Li,Zihan Li,Ziyu Zhang,JunGe ZHI,Xiaofang Li,Yuping Dong
标识
DOI:10.1002/chem.202503511
摘要
ABSTRACT Circularly polarized luminescent (CPL) materials featuring high luminescence dissymmetry factors ( g lum ), high photoluminescence quantum yields ( Φ PL ), and tunable emission properties are essential for practical applications. Herein, three chiral aggregation‐induced emission (AIE) tetraphenylbutadiene (TPB) derivatives (TPB‐Chol * ‐H, TPB‐Chol * ‐CHO, TPB‐Chol * ‐OC 6 ) with high Φ PL were synthesized, each bearing symmetric chiral bis‐cholesteryl moieties and different electron‐donating/accepting groups. When employed as chiral dopants, minute quantities of each derivative were individually doped into the achiral nematic liquid crystal (LC) 5CB, affording three series of luminescent chiral nematic LC composite systems (TPB‐N * ‐LCs). These composites exhibit remarkable CPL activity with high g lum values, attributed to host‐guest interactions that facilitate co‐assembly into ordered supramolecular helices and chiral amplification, despite the chiral AIE dopant itself lacking CPL emission. CPL signals and g lum values enhance with increasing chiral dopant loading, peaking at +0.31, +0.42, and +0.58 for TPB‐Chol * ‐H/5CB, TPB‐Chol * ‐CHO/5CB, and TPB‐Chol * ‐OC 6 /5CB, respectively, at 3 wt% doping. Notably, the introduction of electron‐donating hexyloxy groups (TPB‐Chol * ‐OC 6 ) or electron‐accepting aldehyde groups (TPB‐Chol * ‐CHO) modulates molecular packing, compatibility with 5CB host, and intermolecular interactions. Doping TPB‐Chol * ‐OC 6 into 5CB achieves the optimal performance, with g lum = +0.58 and Φ PL = 84.5%. This work offers an effective strategy for developing CPL materials with simultaneously high g lum and Φ PL .
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