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通过第一性原理高通量筛选和实验验证在锗酸盐中寻找最佳中红外非线性光学材料

Finding Optimal Mid-Infrared Nonlinear Optical Materials in Germanates by First-Principles High-Throughput Screening and Experimental Verification.

作者信息

Yu Jin, Zhang Bingbing, Zhang Xiaodong, Wang Ying, Wu Kui, Lee Ming-Hsien

机构信息

College of Chemistry and Environmental Science, Key Laboratory of Medicinal Chemistry and Molecular Diagnosis of the Ministry of Education, Chemical Biology Key Laboratory of Hebei Province, Hebei University, Baoding 071002, China.

Department of Physics, Tamkang University, New Taipei City 25137, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2020 Oct 7;12(40):45023-45035. doi: 10.1021/acsami.0c15728. Epub 2020 Sep 29.

Abstract

Owing to wide infrared (IR) transparency ranges, high laser damage thresholds, and being easy to grow in open air, germanates are emerging as promising mid-infrared (mid-IR) nonlinear optical (NLO) materials. However, the germanates as NLO materials have not been investigated comprehensively and the crystals with large second harmonic generation (SHG) response have not been identified. Herein, we used the first-principles high-throughput screening pipeline for NLO materials to search for excellent NLO crystals from germanates collected in the inorganic crystal structure database. After two steps of screening, three crystals are picked out from 128 structures based on their predicted energy gaps, birefringences, and SHG coefficients. Subsequently, the three germanates are synthesized and measured. The results show that PbGaGeO and BaTiGeO exhibit a wide energy gap (>3.1 eV) and a strong phase-matchable SHG intensity that are comparable to the benchmark AgGaS (0.8 and 1.2 × AgGaS, respectively). In addition, the statistical analyses of different categories classified according to their cations show that the d-transition metal and lone pair cations are more conducive to achieving a larger SHG response and birefringence compared to other cations in germanates. It gives a guideline for exploring new mid-IR NLO materials.

摘要

由于具有宽红外(IR)透明范围、高激光损伤阈值以及易于在空气中生长的特性,锗酸盐正成为有前景的中红外(mid-IR)非线性光学(NLO)材料。然而,作为NLO材料的锗酸盐尚未得到全面研究,具有大二次谐波产生(SHG)响应的晶体也尚未被识别出来。在此,我们使用用于NLO材料的第一性原理高通量筛选流程,从无机晶体结构数据库中收集的锗酸盐中寻找优异的NLO晶体。经过两步筛选,基于预测的能隙、双折射和SHG系数,从128种结构中挑选出三种晶体。随后,合成并测量了这三种锗酸盐。结果表明,PbGaGeO和BaTiGeO表现出宽能隙(>3.1 eV)和与基准AgGaS相当的强可相位匹配SHG强度(分别为0.8和1.2×AgGaS)。此外,根据阳离子分类的不同类别统计分析表明,与锗酸盐中的其他阳离子相比,d-过渡金属和孤对阳离子更有利于实现更大的SHG响应和双折射。这为探索新型中红外NLO材料提供了指导。

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