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杂阴离子黄长石氧硫化物:一种有前景的红外非线性光学候选材料,具有强二次谐波产生响应、足够的双折射和宽带隙。

Heteroanionic Melilite Oxysulfide: A Promising Infrared Nonlinear Optical Candidate with a Strong Second-Harmonic Generation Response, Sufficient Birefringence, and Wide Bandgap.

作者信息

Wang Ruiqi, Liang Fei, Liu Xin, Xiao Yi, Liu Qianqian, Zhang Xian, Wu Li-Ming, Chen Ling, Huang Fuqiang

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Rare Earth Materials Chemistry and Applications, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, P. R. China.

Institute of Materials Science, TU Darmstadt, 64287 Darmstadt, Germany.

出版信息

ACS Appl Mater Interfaces. 2022 May 10. doi: 10.1021/acsami.2c04422.

Abstract

The achievement of balanced performance with a strong second-harmonic generation (SHG) response, proper birefringence, and wide band gap concurrently is a crucial but challenging task in infrared nonlinear optical (IR-NLO) crystals. Here, we theoretically confirmed that the heteroanionic oxysulfide tetrahedron would produce improved polarizability anisotropy and quadratic hyperpolarizability compared with the monoanionic oxide or sulfide tetrahedra. When this anion-mixing strategy was applied, melilite oxysulfide with the four representative members AGeGaOS (A = Ca, Sr) and SrMGeOS (M = Zn, Cd) was successfully discovered as a promising IR-NLO material system. Remarkably, compared with the monoanionic melilite oxides, these compounds exhibited unbiased performances of proper birefringences (0.106-0.143), strong SHG responses (>10× melilite oxide BaCdGeO, 1.3-2.1× AgGaS (AGS) @1570 nm) with phase-matchable ability, wide band gaps (2.95-3.15 eV), and large laser-induced damage thresholds (LIDTs, 5.6-13.4× AGS). The high structure tolerance of melilite offers a great possibility to improve the SHG response via tuning the orbital composition and hybridization near band edges. This work provides an effective approach for the design of high-performance IR-NLO materials.

摘要

在红外非线性光学(IR-NLO)晶体中,同时实现具有强二次谐波产生(SHG)响应、合适双折射和宽带隙的平衡性能是一项至关重要但具有挑战性的任务。在此,我们从理论上证实,与单阴离子氧化物或硫化物四面体相比,杂阴离子氧硫化物四面体将产生更高的极化率各向异性和二次超极化率。当应用这种阴离子混合策略时,成功发现了具有四个代表性成员AGeGaOS(A = Ca,Sr)和SrMGeOS(M = Zn,Cd)的黄长石氧硫化物作为一种有前途的IR-NLO材料体系。值得注意的是,与单阴离子黄长石氧化物相比,这些化合物表现出无偏的性能,具有合适的双折射(0.106 - 0.143)、强SHG响应(>10×黄长石氧化物BaCdGeO,1.3 - 2.1×AgGaS(AGS)@1570 nm)且具有相位匹配能力、宽带隙(2.95 - 3.15 eV)以及大的激光诱导损伤阈值(LIDTs,5.6 - 13.4×AGS)。黄长石的高结构容忍度为通过调整带边附近的轨道组成和杂化来改善SHG响应提供了很大的可能性。这项工作为高性能IR-NLO材料的设计提供了一种有效方法。

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