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Synthesis, band structure, and optical properties of Ba2ZnV2O8
Authors:D-G Chen  D-S Wu  H Zhang  Y-C Zhang  Y-J Gong  Z-G Kan
Affiliation:Fujian Institute of Research on the Structure of Matter, State Key Laboratory of Structural Chemistry, The Graduate School of the Chinese Academy of Sciences, Fuzhou, Fujian 350002, China
Abstract:A novel compound Ba2ZnV2O8 has been synthesized in high temperature solution reaction and its crystal structure has been characterized by means of single crystal X-ray diffraction analysis. It crystallizes in monoclinic system and belongs to space group P21/c with a=7.9050(16), b=16.149(3), View the MathML source, β=90.49(3). It builds up from 1-D branchy chains of ZnV2O84−], and the Ba2+ cations are located in the space among these chains. The IR spectrum, ultraviolet-visible diffuse reflection integral spectrum and fluorescent spectra of this compound have been investigated. The calculated results of energy band structure by the density functional theory method show that the solid-state compound of Ba2ZnV2O8 is an insulator with direct band gap of 3.48 eV. The calculated total and partial density of states indicate that the top valence bands are contributions from the mixings of O-2p, V-3d, and Zn-3d states and low conduction bands mostly originate from unoccupied antibonding states between the V-3d and O-2p states. The V-O bonds are mostly covalence characters and Zn-O bonds are mostly ionic interactions, and the ionic interaction strength is stronger between the Ba-O than between the Zn-O. The refractive index of nx, ny, and nz is estimated to be 1.7453, 1.7469, and 1.7126, respectively, at wavelength of 1060 nm for Ba2ZnV2O8 crystal.
Keywords:Crystal structure  Energy band  Orthovanadate  Optical properties
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