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在高发射性手性氯化铽和氯化铕中调节可见圆偏振发光

Tuning the visible circularly polarized luminescence in highly emissive chiral terbium and europium chlorides.

作者信息

Chen Congcong, Luo Zhongshiqi, Zhang Mengke, Li Xiaojing, Zhang Tonghuan, Chen Jian

机构信息

Department of Chemistry, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.

School of Flexible Electronics (SoFE) & State Key Laboratory of Optoelectronic Materials and Technologies (OEMT), Sun Yat-sen University, Shenzhen, Guangdong 518107, China.

出版信息

Dalton Trans. 2025 Aug 19;54(33):12658-12666. doi: 10.1039/d5dt01465d.

Abstract

Chiral hybrid metal halides have become increasingly popular due to their high structural tunability and exceptional optoelectronic properties. Incorporating rare-earth (RE) metals into the structural units and inheriting their pure emission characteristics are of great interest and importance. Here, we report two pairs of new isostructural chiral hybrid RE chlorides based on RE metals Tb and Eu, crystallizing in the non-centrosymmetric space group 222. The circular dichroism (CD) and circularly polarized luminescence (CPL) spectra of these materials exhibit mirror-like symmetrical shapes, further confirming the polar nature and highly controllable selectivity due to the use of - or -methylpiperazinium cations. The CPL emissions have signature sharp signals due to the RE emissions, with dissymmetry factors || of ∼4 × 10 for /-Tb and ∼6 × 10 for /-Eu, respectively. Furthermore, these materials show superior emission properties in the visible region, with a high photoluminescence quantum yield (PLQY) of ∼80% for /-Tb and ∼30% for /-Eu. In addition, the Tb-Eu alloyed compounds show excitation-dependent tunable CPL in the visible region with green, yellow, or red emission, which can be applied in anti-counterfeiting and information encryption. The highly tunable CPL emission and diversification of chiral RE metal halides in this work offer new routes for chiroptical optoelectronics.

摘要

手性杂化金属卤化物因其高度的结构可调控性和优异的光电性能而越来越受到关注。将稀土(RE)金属纳入结构单元并继承其纯发射特性具有重大意义。在此,我们报道了基于稀土金属Tb和Eu的两对新的同构手性杂化稀土氯化物,它们结晶于非中心对称空间群222中。这些材料的圆二色性(CD)和圆偏振发光(CPL)光谱呈现出镜像对称形状,进一步证实了由于使用了 - 或 - 甲基哌嗪鎓阳离子而具有的极性性质和高度可控的选择性。由于稀土发射,CPL发射具有特征性锐峰信号,对于 /-Tb,不对称因子||约为4×10,对于 /-Eu,不对称因子||约为6×10。此外,这些材料在可见光区域表现出优异的发射性能,对于 /-Tb,光致发光量子产率(PLQY)高达约80%,对于 /-Eu,光致发光量子产率约为30%。此外,Tb-Eu合金化合物在可见光区域表现出与激发相关的可调谐CPL,发射绿光、黄光或红光,可应用于防伪和信息加密。这项工作中手性稀土金属卤化物的高度可调谐CPL发射和多样化为手性光电子学提供了新途径。

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