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一维手性杂化卤化铋中强烈的二次和三次谐波产生

Strong Second- and Third-Harmonic Generation in 1D Chiral Hybrid Bismuth Halides.

作者信息

Yao Li, Zeng Zhouxiaosong, Cai Chengkun, Xu Peng, Gu Honggang, Gao Liang, Han Junbo, Zhang Xiaowei, Wang Xi, Wang Xiao, Pan Anlian, Wang Jian, Liang Wenxi, Liu Shiyuan, Chen Chao, Tang Jiang

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.

Key Laboratory for Micro-Nano Physics and Technology of Hunan Province, School of Physics and Electronics, Hunan University, Changsha 410006, China.

出版信息

J Am Chem Soc. 2021 Oct 6;143(39):16095-16104. doi: 10.1021/jacs.1c06567. Epub 2021 Sep 24.

Abstract

Breaking the symmetry of a crystal structure can enable even-order nonlinear activities, including second-harmonic generation (SHG). The emerging chiral hybrid organic-inorganic metal halides feature unique optical and electronic properties and flexible crystal structures, making them a class of promising nonlinear optical materials. However, their nonlinear response performances are currently inferior to traditional nonlinear crystals, because of the lack of research on resonant enhancement and third-harmonic generation (THG). Herein, we designed chiral hybrid bismuth halides with naturally nonsymmetrical structure to enable SHG. Simultaneously, these chiral compounds preserve 1D crystal structures to create strong free exciton, broad self-trapped exciton (STE), and discrete band energy levels, which facilitate the resonant enhancement of SHG and THG susceptibilities. These new chiral films showcase superior effective SHG susceptibility (χ ∼ 130.5 pm V at an interesting wavelength of 1550 nm), exceeding that of the reference, a commercial LiNbO (χ ∼ 83.4 pm V) single-crystal film. Furthermore, their THG intensities are even higher than their SHG intensities, with effective THG susceptibility (χ) being ∼9.0 × 10 pm V at 1550 nm (37 times that of the reference monolayer WS). Their high SHG and THG performances indicate the promising future of these 1D chiral hybrid bismuth halides toward nonlinear optical applications.

摘要

打破晶体结构的对称性能够实现包括二次谐波产生(SHG)在内的偶数阶非线性光学效应。新兴的手性有机-无机杂化金属卤化物具有独特的光学和电子性质以及灵活的晶体结构,使其成为一类有前途的非线性光学材料。然而,由于缺乏对共振增强和三次谐波产生(THG)的研究,它们的非线性响应性能目前不如传统非线性晶体。在此,我们设计了具有天然不对称结构的手性杂化铋卤化物以实现SHG。同时,这些手性化合物保留一维晶体结构以产生强自由激子、宽自陷激子(STE)和离散的能带能级,这有利于SHG和THG极化率的共振增强。这些新型手性薄膜展现出优异的有效SHG极化率(在1550 nm的有趣波长下χ ∼ 130.5 pm V),超过了参考材料——商用LiNbO(χ ∼ 83.4 pm V)单晶薄膜。此外,它们的THG强度甚至高于SHG强度,在1550 nm处有效THG极化率(χ)约为9.0 × 10 pm V(是参考单层WS的37倍)。它们高的SHG和THG性能表明这些一维手性杂化铋卤化物在非线性光学应用方面有着光明的前景。

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