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通过引入 Jahn-Teller 畸变在(MA)CuX 中解锁巨大的三阶光学非线性。

Unlocking Giant Third-Order Optical Nonlinearity in (MA)CuX through Introducing Jahn-Teller Distortion.

作者信息

Li Bingyue, Li Hui, Wu Chao, Fu LuLu, Boukhvalov Danil W, Humphrey Mark G, Zhang Chi, Huang Zhipeng

机构信息

China-Australia Joint Research Center for Functional Molecular Materials, School of Chemical Science and Engineering, Tongji University, Shanghai, 200092, P.R. China.

College of Science, Nanjing Forestry University, Nanjing 210037, P.R. China, Institute of Physics and Technology, Ural Federal University, Mira Str. 19, 620002, Yekaterinburg, Russia.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 16;63(38):e202406941. doi: 10.1002/anie.202406941. Epub 2024 Jul 3.

Abstract

Nonlinear absorption coefficient and modulation depth stand as pivotal properties of nonlinear optical (NLO) materials, while the existing NLO materials exhibit limitations such as low nonlinear absorption coefficients and/or small modulation depths, thereby severely impeding their practical application. Here we unveil that introducing Jahn-Teller distortion in a Mott-Hubbard system, (MA)CuX (MA=methylammonium; X=Cl, Br) affords the simultaneous attainment of a giant nonlinear absorption coefficient and substantial modulation depth. The optimized compound, (MA)CuCl, demonstrates a nonlinear absorption coefficient of (1.5±0.08)×10 cm GW, a modulation depth of 60 %, and a relatively low optical limiting threshold of 1.22×10 J cm. These outstanding attributes surpass those of most reported NLO materials. Our investigation reveals that a more pronounced distortion of the [CuX] octahedron emerges as a crucial factor in augmenting optical nonlinearity. Mechanism study involving structural and spectral characterization along with theoretical calculations indicates a correlation between the compelling performance and the Mott-Hubbard band structure of the materials, coupled with the Jahn-Teller distortion-induced d-d transition. This study not only introduces a promising category of high-performance NLO materials but also provides novel insights into enhancing the performance of such materials.

摘要

非线性吸收系数和调制深度是非线性光学(NLO)材料的关键特性,然而现有的NLO材料存在诸如非线性吸收系数低和/或调制深度小等局限性,从而严重阻碍了它们的实际应用。在此,我们揭示在Mott-Hubbard体系(MA)CuX(MA = 甲基铵;X = Cl、Br)中引入Jahn-Teller畸变能够同时实现巨大的非线性吸收系数和可观的调制深度。优化后的化合物(MA)CuCl表现出(1.5±0.08)×10 cm GW的非线性吸收系数、60%的调制深度以及1.22×10 J cm的相对较低的光学限幅阈值。这些优异的特性超过了大多数已报道的NLO材料。我们的研究表明,[CuX]八面体更显著的畸变是增强光学非线性的关键因素。涉及结构和光谱表征以及理论计算的机理研究表明,这种引人注目的性能与材料的Mott-Hubbard能带结构以及Jahn-Teller畸变诱导的d-d跃迁之间存在关联。这项研究不仅引入了一类有前景的高性能NLO材料,还为提升此类材料的性能提供了新的见解。

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