发光
发色团
化学
电致发光
碘化物
星团(航天器)
分子间力
铜
分子
结晶学
卤化物
光化学
光电子学
材料科学
有机化学
计算机科学
程序设计语言
图层(电子)
作者
Jingjing Wang,Huiting Zhou,Jun‐Nan Yang,Li‐Zhe Feng,Jisong Yao,Kuang‐Hui Song,Manman Zhou,Shan Jin,Guozhen Zhang,Hong‐Bin Yao
摘要
Chiral chromophores and their ordered assemblies are intriguing for yielding circularly polarized luminescence (CPL) and exploring intrinsic structure–light emission relationships. With the extensively studied chiral organic molecules and inorganic nanoparticle assemblies for the amplified CPL, the assemblies of copper halide hybrid clusters have attracted intensive attention due to their potential efficient CPL. Here, we report robust chiral phosphine–copper iodide hybrid clusters and their layered assemblies in crystalline states for amplified CPL. We reveal that the intermolecular interactions endow the clusters with the capability of assembling into chiral crystalline CPL materials, including hexagonal platelet-shaped microcrystals (glum ≈ 9.5 × 10–3) and highly oriented crystalline films (glum ≈ 5 × 10–3). Owing to the high crystalline feature of the thin film, we demonstrate an electroluminescent device with bright electroluminescence (1200 cd m–2).
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