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极性季铵阳离子诱导的AMX型钙钛矿衍生物的对称性破缺:实现高效非线性光学性质

Symmetry breaking of AMX-type perovskite derivatives induced by polar quaternary ammonium cations: achieving efficient nonlinear optical properties.

作者信息

Wu Jia-Jing, Guo Yue, Yao Wen-Dong, Liu Wen-Long, Guo Sheng-Ping

机构信息

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, Jiangsu 225002, P. R. China.

出版信息

Dalton Trans. 2022 Mar 22;51(12):4878-4883. doi: 10.1039/d2dt00451h.

Abstract

Low-dimensional organic-inorganic metal halides, especially lead-free perovskites, are attracting increasing attention because of their environmentally friendly processing, flexible structures, chemical stability, and promising nonlinear optical properties. Herein, we report a new stable polar 0D lead-free hybrid bismuth chloride to enable the second-harmonic generation (SHG) active material (BTA)BiCl (BTA = benzyltriethylammonium, CHCHN(CH)) that was obtained by the antisolvent vapor diffusion method and crystallized in the polar space group. Its structure features organic cations surrounded by face-sharing [BiCl] dimers. (BTA)BiCl exhibits a wide direct bandgap (3.21 eV) and a strong phase-matchable SHG conversion efficiency (1.39 × KDP). Theoretical calculation reveals that the SHG response is owing to the synergistic effect of distorted inorganic [BiCl] anions and polar organic BTA cations. This work not only enriches the family of organic-inorganic AMX (A = monovalent cations; M = trivalent metal ions; and X = halide ions) NLO crystals but also provides the possibilities for further designing novel lead-free semiconducting piezoelectric, pyroelectric and ferroelectric materials.

摘要

低维有机-无机金属卤化物,尤其是无铅钙钛矿,因其环境友好的加工方式、灵活的结构、化学稳定性以及有前景的非线性光学性质而受到越来越多的关注。在此,我们报道了一种新型稳定的极性零维无铅混合铋氯化物,以实现通过反溶剂气相扩散法获得并在极性空间群中结晶的二次谐波产生(SHG)活性材料(BTA)BiCl(BTA = 苄基三乙铵,CHCHN(CH))。其结构特征是有机阳离子被共面的[BiCl]二聚体包围。(BTA)BiCl表现出较宽的直接带隙(3.21 eV)和较强的相位匹配SHG转换效率(1.39×KDP)。理论计算表明,SHG响应归因于扭曲的无机[BiCl]阴离子和极性有机BTA阳离子的协同效应。这项工作不仅丰富了有机-无机AMX(A = 单价阳离子;M = 三价金属离子;X = 卤离子)NLO晶体家族,还为进一步设计新型无铅半导体压电、热电和铁电材料提供了可能性。

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