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Effect of Rigid Units on the Symmetry of the Framework: Design and Synthesis of Centrosymmetric NaBa4(B5O9)2F2Cl and Noncentrosymmetric NaBa4(AlB4O9)2Br3

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Figshare2016-02-22 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Effect_of_Rigid_Units_on_the_Symmetry_of_the_Framework_Design_and_Synthesis_of_Centrosymmetric_NaBa_sub_4_sub_B_sub_5_sub_O_sub_9_sub_sub_2_sub_F_sub_2_sub_Cl_and_Noncentrosymmetric_NaBa_sub_4_sub_AlB_sub_4_sub_O_sub_9_sub_sub_2_sub_Br_sub_3_sub_/2561641
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Two similarly stoichiometric borate halides, NaBa4(AlB4O9)2Br3 and NaBa4(B5O9)2F2Cl, have been successfully designed and synthesized, and their structures were determined by single-crystal X-ray diffraction. Their crystal structures feature the [AlB4O9]∞ and [B5O9]∞ networks, respectively. NaBa4(AlB4O9)2Br3 is noncentrosymmetric and crystallizes in polar space group P42nm, while NaBa4(B5O9)2F2Cl is centrosymmetric and crystallizes in monoclinic space group P21/n. Powder second-harmonic generation (SHG) measurements reveal that NaBa4(AlB4O9)2Br3 has an optical nonlinearity comparable to that of KH2PO4 (KDP) and is type I phase-matchable. In addition, infrared and UV–Vis–NIR diffuse reflectance spectroscopy, as well as electronic band structure calculations, were performed on the reported materials.
创建时间:
2016-02-22
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