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A2SrMIVS4 (A = Li, Na; MIV = Ge, Sn) concurrently exhibiting wide bandgaps and good nonlinear optical responses as new potential infrared nonlinear optical materials

机译:作为新型潜在的红外非线性光学材料,A2SrMIVS4(A = Li,Na; MIV = Ge,Sn)同时显示出较宽的带隙和良好的非线性光学响应

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Exploration of new nonlinear optical (NLO) materials is of importance for infrared (IR) applications. However, it is an extremely tough challenge to design and synthesize excellent IR NLO materials with optimal performances ( e.g. , concurrently a large NLO response and wide bandgap). Herein, four new mixed alkali/alkaline earth metal sulfides, A _(2) SrM ~(IV) S _(4) (A = Li, Na; M ~(IV) = Ge, Sn), were successfully synthesized by a motif-optimization approach using the classical AgGaS _(2) as a template. Note that all of them concurrently exhibit wide bandgaps (3.1–3.8 eV) and good NLO responses (0.5–0.8 × AgGaS _(2) ) with phase-matching behavior, which satisfy the balance conditions (E _(g) ≥ 3.0 eV and d _( ij ) ≥ 0.5 × benchmark AgGaS _(2) ) of optical performances and hence are outstanding IR NLO materials. Remarkably, both of Na _(2) SrM ~(IV) S _(4) have the same structure without the structural transformation (Ge to Sn) in the reported related analogues and an interesting cation-dependent structural change is also found in Na _(2) M ~(II) SnS _(4) (M ~(II) : Sr, R 3 c vs. Ba, I 2 d ). These results verify that the above design strategy of motif-optimization provides a feasible guide for the discovery of new IR NLO candidates and the A–AE–M–S (A = alkali metal; AE = alkaline-earth metal; M = Ga, In, Ge, Sn) system was identified as the preferred system for IR NLO materials.
机译:探索新的非线性光学(NLO)材料对于红外(IR)应用至关重要。然而,设计和合成具有最佳性能(例如,同时具有大的NLO响应和宽的带隙)的优异的IR NLO材料是一个非常艰巨的挑战。在此,成功地合成了四种新的碱金属/碱土金属混合硫化物A _(2)SrM〜(IV)S _(4)(A = Li,Na; M〜(IV)= Ge,Sn)。使用经典AgGaS _(2)作为模板进行主题优化方法。请注意,它们同时显示出较宽的带隙(3.1–3.8 eV)和良好的NLO响应(0.5–0.8×AgGaS _(2)),并且具有相匹配行为,满足平衡条件(E _(g)≥3.0 eV d_(ij)≥0.5×基准AgGaS _(2)的光学性能,因此是出色的IR NLO材料。值得注意的是,在报道的相关类似物中,Na _(2)SrM〜(IV)S _(4)具有相同的结构,但没有结构转变(Ge到Sn),并且在Na中也发现了有趣的阳离子依赖性结构变化_(2)M〜(II)SnS _(4)(M〜(II):Sr,R 3 c对Ba,I 2 d)。这些结果证明,上述动机优化设计策略为发现新的IR NLO候选物和A–AE–M–S(A =碱金属; AE =碱土金属; M = Ga,在In,Ge,Sn)系统中被确定为IR NLO材料的首选系统。

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