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通过轨道杂化增强打破[BO]团簇的固有排列以实现非线性光学

Breaking the Inherent Interarrangement of [BO] Clusters for Nonlinear Optics with Orbital Hybridization Enhancement.

作者信息

Qiu Haotian, Li Fuming, Li Zhi, Yang Zhihua, Pan Shilie, Mutailipu Miriding

机构信息

Research Center for Crystal Materials, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi 830011, People's Republic of China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

J Am Chem Soc. 2023 Nov 8;145(44):24401-24407. doi: 10.1021/jacs.3c09573. Epub 2023 Oct 24.

Abstract

The [BO] group as a prime functional unit provides borates with intrinsic properties that are modified by coordination to cations. Inherent [BO] cluster structures in borates exclusively made of them have a near-plane configuration, with more than 90% of them having a maximum dihedral angle of zero and the remaining ones being less than 13°. Although such an inherent configuration can produce considerable birefringence for good phase-matching ability, this is not conducive to obtaining high conversion efficiency and beam quality due to the walk-off effects in the nonlinear optical process. In this article, two new borate halides CaBOX (X = Cl and Br) were reported, in which the confinement effects of distorted halogen-centered secondary building blocks compress the existence space of [BO] primitives, resulting in the nonparallel arrangement between [BO] clusters in this series. Both compounds show large second harmonic generation effects, and more importantly, the broken inherent interarrangement of [BO] clusters makes them a moderate birefringence and small walk-off angle. Their moderate birefringence is due to the large angular alignment between [BO] clusters, resulting from the orbital hybridization between the Ca and the O orbitals of the terminal O atoms on [BO] clusters. Our model supports this viewpoint and offers guidelines for rearranging [BO] clusters' arrangements in borates.

摘要

[BO]基团作为主要功能单元赋予硼酸盐一些固有特性,这些特性会因与阳离子配位而发生改变。仅由它们构成的硼酸盐中的固有[BO]簇结构具有近平面构型,其中超过90%的最大二面角为零,其余的小于13°。尽管这种固有构型可产生可观的双折射以具备良好的相位匹配能力,但由于非线性光学过程中的离散效应,这不利于获得高转换效率和光束质量。在本文中,报道了两种新型硼酸盐卤化物CaBOX(X = Cl和Br),其中扭曲的以卤素为中心的二级结构单元的限制效应压缩了[BO]原语的存在空间,导致该系列中[BO]簇之间呈非平行排列。这两种化合物均表现出较大的二次谐波产生效应,更重要的是,[BO]簇固有排列的破坏使其具有适度的双折射和较小的离散角。它们适度的双折射归因于[BO]簇之间较大的角度排列,这是由Ca与[BO]簇末端O原子的O轨道之间的轨道杂化导致的。我们的模型支持这一观点,并为重新排列硼酸盐中[BO]簇的排列提供了指导。

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