LiGaGe2Se6: A New IR Nonlinear Optical Material with Low Melting Point
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https://figshare.com/articles/dataset/LiGaGe_sub_2_sub_Se_sub_6_sub_A_New_IR_Nonlinear_Optical_Material_with_Low_Melting_Point/2560567
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The new compound LiGaGe2Se6 has been synthesized. It crystallizes in the orthorhombic space group Fdd2 with a = 12.501(3) Å, b = 23.683(5) Å, c = 7.1196(14) Å, and Z = 8. The structure is a three-dimensional framework composed of corner-sharing LiSe4, GaSe4, and GeSe4 tetrahedra. The compound exhibits a powder second harmonic generation signal at 2 μm that is about half that of the benchmark material AgGaSe2 and possesses a wide band gap of about 2.64(2) eV. LiGaGe2Se6 melts congruently at a rather low temperature of 710 °C, which indicates that bulk crystals can be obtained by the Bridgman–Stockbarger technique. According to a first-principles calculation, there is strong hybridization of the 4s and 4p orbitals of Ga, Ge, and Se around the Fermi level. The calculated birefractive index is Δn = 0.04 for λ ≥ 1 μm, and the calculated major SHG tensor elements are d15 = 18.6 pm/V and d33 = 12.8 pm/V. This new material is promising for application in IR nonlinear optics.
创建时间:
2016-02-22



