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JOURNAL OF SYNTHETIC CRYSTALS ›› 2024, Vol. 53 ›› Issue (6): 999-1007.

• Research Articles • Previous Articles     Next Articles

First Principles Study on the Structure-Property Relationship of Alkali Metal Molybdates

ZHANG Bo1,2, WANG Yunjie1,2, QI Yajie1,2, DING Jiafu1,2, HE Zhihao1,2, SU Xin1,2   

  1. 1. School of Physical Science and Technology, Yili Normal University, Yining 835000, China;
    2. Xinjiang Laboratory of Phase Transitions and Microstructures of Condensed Matter Physics, Yili Normal University, Yining 835000, China
  • Received:2024-01-15 Online:2024-06-15 Published:2024-06-20

Abstract: The crystal structures, electronic structures, atomic populations, charge density distributions and birefringence of Li2MoO4, Na2MoO4, K2MoO4 and Rb2MoO4 were compared by first principles. The results show that the bandgaps of the four crystals are direct band gaps, the differences of the bandgap between them are not large, and they are all around 4.3 eV. As the radius of alkali metal atoms increases, the contribution of their electronic orbitals to the energy bands moves closer to the high-energy side. The distribution of the bonding boule number and electron density suggests that covalent bonds are formed between Mo and O, and the alkali metal atoms form ionic bonds with O. Rb2MoO4 has the highest birefringence of 0.022 5 among the four crystals at 1 064 nm. The refractive indices of the four crystals show that the radius is positively correlated with the birefringence. The study in this paper provides some references for the application of molybdate in nonlinear optical crystals.

Key words: alkali metal molybdate, optical property, birefringence, bandgap structure, first principle, density functional theory

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