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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Second-Harmonic Generation and Crystal Structure of the Diamond-like Semiconductors Li2CdGeS4 and Li2CdSnS4
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Second-Harmonic Generation and Crystal Structure of the Diamond-like Semiconductors Li2CdGeS4 and Li2CdSnS4

机译:类金刚石半导体Li2CdGeS4和Li2CdSnS4的二次谐波产生和晶体结构

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摘要

The semiconductors Li2CdGeS4 and Li2CdSnS4, which are of interest for their nonlinear optical properties, were synthesized using high-temperature solid-state and polychalcogenide flux syntheses. Both compounds were found to crystallize in Pmn2(1), with R1 (for all data) = 1.93% and 1.86% for Li2CdGeS4 and Li2CdSnS4, respectively. The structures of both compounds are diamond-like with the tetrahedra pointing in the same direction along the c axis. The alignment of the tetrahedra results in the structure lacking an inversion center, a prerequisite for second-harmonic generation (SHG). A modified Kurtz nonlinear optical powder technique was used to determine the SHG responses of both compounds. Li2CdGeS4 displayed a type 1 phase-matchable response of approximately 70x alpha-quartz, while Li2CdSnS4 displayed a type I non-phase-matchable response of approximately 100x alpha-quartz. Diffuse-reflectance spectroscopy was used to determine band gaps of 3.10 and 3.26 eV for Li2CdGeS4 and Li2CdSnS4, respectively.
机译:半导体Li2CdGeS4和Li2CdSnS4因其非线性光学特性而受到关注,它们是通过高温固态和多硫属元素化物通量合成法合成的。发现这两种化合物均在Pmn2(1)中结晶,对于Li2CdGeS4和Li2CdSnS4,R1(对于所有数据)分别为1.93%和1.86%。两种化合物的结构均为菱形,四面体沿c轴指向相同方向。四面体的排列导致结构缺乏反转中心,这是二次谐波产生(SHG)的前提。改进的Kurtz非线性光学粉末技术用于确定两种化合物的SHG响应。 Li2CdGeS4显示出大约70xα-石英的1型相位匹配响应,而Li2CdSnS4显示出大约100xα-石英的1型非相位匹配响应。使用漫反射光谱法分别确定Li2CdGeS4和Li2CdSnS4的带隙为3.10和3.26 eV。

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