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通过外部和内部手性转移驱动的可逆手性诱导实现混合金属卤化物的反向手性光学性质

Inverted Chiroptical Properties of Hybrid Metal Halides Through Reversible Chiral Induction Driven by External and Internal Chirality Transfer.

作者信息

Guan Junjie, Han Wenqing, Zhang Youpei, Zhao Jiuzhou, Han Shanshan, Wang Yue, Fu Bona, Kang Hanwen, Wang Peihan, Cheng Puxin, Zheng Yongshen, Xu Jialiang, Bu Xian-He

机构信息

School of Materials Science and Engineering, Tianjin Key Laboratory of Metal and Molecular Materials Chemistry, Frontiers Science Center for New Organic Matter, Academy for Advanced Interdisciplinary Studies, Nankai University, Tianjin, 300350, P.R. China.

出版信息

Angew Chem Int Ed Engl. 2025 Jul;64(27):e202503083. doi: 10.1002/anie.202503083. Epub 2025 May 6.

Abstract

Chiral organic-inorganic hybrid metal halides (OIHMHs) are commonly constructed by introducing pairs of enantiomorphic chiral precursors through a single chirality transfer pathway, which may limit the regulation of chiral structural diversity and chiroptoelectronic properties. Herein, we propose a new strategy for achieving reversible chiral induction of OIHMHs with inverted chiroptical properties through external and internal chirality transfer pathways, by utilizing a single chiral reagent R-/S-α-methylbenzylamine (R-/S-MBA). Specifically, R-MBA can externally induce chiral enrichment of M-DMA(BiInSb)Cl (M-DMA(Bi-In-Sb)Cl, DMA = dimethylammonium cation) without integrating into structure. Conversely, R-MBA can insert into structure, internally inducing the formation of DMA(R-MBA)(BiInSb)Cl (DMA(R-MBA)(Bi-In-Sb)Cl), which reverses the structural arrangements and inverts both linear and nonlinear chiroptical properties. Both externally and internally induced chiral OIHMHs exhibit significant chiroptical responses with high photoluminescence quantum yield (PLQY) and second harmonic generation (SHG). Moreover, the externally induced centimeter-sized rhombic single crystal enables morphology- and angle-dependent inverted circularly polarized luminescence with a dissymmetry factor of ∼0.02, through single crystal anisotropy. The internal induction enhances SHG intensity by nine-fold and increases PLQY to 98.9%. This multi-path chirality transfer, based on a single chiral reagent, can significantly broaden the structural scope of functional chiral OIHMH materials and facilitate the regulation of chiroptoelectronic properties.

摘要

手性有机-无机杂化金属卤化物(OIHMHs)通常是通过单一的手性转移途径引入对映体手性前体对来构建的,这可能会限制手性结构多样性和手性光电子性质的调控。在此,我们提出了一种新策略,通过外部和内部手性转移途径,利用单一手性试剂R-/S-α-甲基苄胺(R-/S-MBA),实现具有相反手性光学性质的OIHMHs的可逆手性诱导。具体而言,R-MBA可以在不整合到结构中的情况下外部诱导M-DMA(BiInSb)Cl(M-DMA(Bi-In-Sb)Cl,DMA = 二甲基铵阳离子)的手性富集。相反,R-MBA可以插入到结构中,内部诱导形成DMA(R-MBA)(BiInSb)Cl(DMA(R-MBA)(Bi-In-Sb)Cl),这会使结构排列反转,并使线性和非线性手性光学性质都反转。外部和内部诱导的手性OIHMHs都表现出显著的手性光学响应,具有高光致发光量子产率(PLQY)和二次谐波产生(SHG)。此外,外部诱导的厘米级菱形单晶通过单晶各向异性实现了形态和角度依赖性的反向圆偏振发光,不对称因子约为0.02。内部诱导使SHG强度提高了九倍,并将PLQY提高到98.9%。这种基于单一手性试剂的多路径手性转移可以显著拓宽功能性手性OIHMH材料的结构范围,并促进手性光电子性质的调控。

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