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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Na2Hg3M2S8 (M = Si, Ge, and Sn): New Infrared Nonlinear Optical Materials with Strong Second Harmonic Generation Effects and High Laser-Damage Thresholds
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Na2Hg3M2S8 (M = Si, Ge, and Sn): New Infrared Nonlinear Optical Materials with Strong Second Harmonic Generation Effects and High Laser-Damage Thresholds

机译:Na2Hg3M2S8(M = Si,Ge和Sn):具有强大的二次谐波产生效应和高激光损伤阈值的新型红外非线性光学材料

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摘要

A new family of noncentrosymmetric isostructural compounds, Na2Hg3M2S8 (M = Si, Ge, and Sn), was successfully synthesized. They crystallize in the tetragonal space group P (4) over bar c2 with Z = 2. Their major structures are composed of infinite cross-connected (infinity)(HgS3)(n) chains and isolated [MS4] ligands and show the interesting tunnel features. Interestingly, compared with the structures of A(2)Hg(3)M(2)S(8) (A = alkali metal, Na-Cs), it can be found that the structural symmetries show a gradually rising tendency from Cs to Na analogues as a result of cation size effect, which rarely exists in quaternary alkali metal chalcogenides. Property measurements show that title compounds exhibit strong second harmonic generation (SHG) effects with a phase-matching behavior at 2.09 mu m, wide transparency range in the infrared (IR) region, and large laser-damage thresholds (LDTs). Remarkably, Na2Hg3Si2S8 and Na2Hg3Ge2S8 achieve the suitable balance between large SHG effects (1.3 and 2.2 X benchmark AgGaS2) and high LDTs (4.5 and 3 x AgGaS2), respectively, and can be expected to be potential nonlinear optical (NLO) candidates in the IR region. Moreover, band structures and NLO properties of title compounds are also theoretically studied, and the calculated NLO coefficients are consistent with the experimental observations.
机译:成功地合成了一个新的非中心对称的同构化合物,Na2Hg3M2S8(M = Si,Ge和Sn)。它们在Z = 2的c2棒上的四方空间群P(4)中结晶。它们的主要结构由无限的交叉连接(无限)(HgS3)(n)链和孤立的[MS4]配体组成,并显示出有趣的隧道特征。有趣的是,与A(2)Hg(3)M(2)S(8)的结构(A =碱金属,Na-Cs)相比,可以发现结构对称性显示从Cs到Cs逐渐升高的趋势。由于阳离子的尺寸效应,Na类似物很少出现在季碱金属硫族化物中。性能测量表明,标题化合物表现出强的二次谐波(SHG)效应,在2.09μm处具有相匹配行为,在红外(IR)区域具有宽的透明范围,并且具有较大的激光损伤阈值(LDT)。值得注意的是,Na2Hg3Si2S8和Na2Hg3Ge2S8分别在较大的SHG效应(1.3和2.2 X基准AgGaS2)和较高的LDT(4.5和3 x AgGaS2)之间实现了适当的平衡,并且可以预期是IR中潜在的非线性光学(NLO)候选者地区。此外,理论上还研究了标题化合物的能带结构和NLO性质,计算出的NLO系数与实验结果相符。

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