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In situ hydrothermal synthesis of polar second-order nonlinear optical selenate Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2)
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作者 Chao Wu Xingxing Jiang +5 位作者 Lin Lin Tianhui Wu Zheshuai Lin Zhipeng Huang Mark G.Humphrey Chi Zhang 《Inorganic Chemistry Frontiers》 2021年第12期3141-3148,共8页
The first alkali–metal selenate nonlinear optical (NLO) crystal,Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2),has been obtained by in situ hydrothermal synthesis.It crystallizes in the polar and noncentrosymmetric (NCS) ... The first alkali–metal selenate nonlinear optical (NLO) crystal,Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2),has been obtained by in situ hydrothermal synthesis.It crystallizes in the polar and noncentrosymmetric (NCS) space group Cc (no.9).The structure of Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2) can be described as isolated [SeO_(4)]/[HSeO_(4)] tetrahedra connected by H-bonding interactions and Na–O bonds,forming a three-dimensional framework.Powder second-harmonic generation (SHG) measurements show that Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2) is phase-matching with a moderate SHG response of ca.1.6 times that of benchmark KH_(2)PO_(4).The UV-Vis-NIR spectrum shows that the title compound is a wide-band semiconductor with an optical band gap of 3.57 eV.The birefringence of Na_(5)(SeO_(4))(HSeO_(4))_(3)(H_(2)O)_(2) was calculated to be 0.037 at 1064 nm.First-principles studies show that the [SeO_(4)]/[HSeO_(4)] tetrahedra are the main contributors to its NLO properties.This study indicates that pure selenate is a promising material system to afford NCS structures with SHG responses. 展开更多
关键词 situ hydrothermal synthesisit phase matching nonlinear optical polar second order nonlinear optical Na SeO HSeO H O na o bondsforming selenate situ hydrothermal synthesis
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