Synthesis of Barium Tungstate in Melts of the System (Li2WO4–Na2WO4)eut–Ba(NO3)2(Li,Na,Ba//NO3,WO4)

被引:0
作者
Cherkesov Z.A. [1 ]
Kharaev A.M. [1 ]
机构
[1] Berbekov Kabardino-Balkarian State University, Nalchik
关键词
barium tungstate synthesis; identification; melt; reaction thermodynamics;
D O I
10.1134/S1995421223030085
中图分类号
学科分类号
摘要
Abstract: This article contains material on the analysis of the interaction of barium nitrate with lithium and sodium tungstates in eutectic melts (Li2WO4–Na2WO4)eut within the framework of thermodynamics and physicochemical analysis, which showed that the processes associated with the synthesis of barium tungstate, which is in demand in science and practice, are characterized by significant negative Gibbs energy, an important condition for achieving the goal of this work, and can be implemented at relatively low temperatures. The paper also provides material on the development of an optimized method for the synthesis of BaWO4 based on the (Li2WO4–Na2WO4)eut–Ba(NO3)2 system, which is characterized by high productivity and the yield of the target product in the nanocrystalline state. Barium tungstate was synthesized by thermal treatment of a stoichiometric mixture of reagents of a given mass at 600°C (accuracy ±10°C) for 40–50 min, followed by leaching and isolation of barium tungstate. The preparation was identified by the methods of chemical and X-ray analysis, and dispersion was determined by electron microscopy. © 2023, Pleiades Publishing, Ltd.
引用
收藏
页码:662 / 667
页数:5
相关论文
共 22 条
  • [1] Gmelins Handbuch Der Anorganichen Chemie, (1933)
  • [2] Garmash V.M., Tedzhetov V.A., Yakimov I.O., Correlations of luminescent properties with the melting point in tungstate crystals of elements of the second subgroup,” Izv. Vyssh. Uchebn. Zaved, Mater. Elektron. Tekh., No., 3, pp. 26-32, (2009)
  • [3] Cavalcante L.S., Sczancoski J.C., Espinosa J.W.M., Photoluminescent behavior of BaWO<sub>4</sub> powders processed in microwave hydrothermal, J. Alloys Compd., 474, pp. 195-200, (2009)
  • [4] Zverev P.G., Basiev T.T., Sobol' A.A., Stimulated Raman scattering in alkaline earth tungstate crystals, Kvant. Elektron., 30, pp. 55-59, (2000)
  • [5] Pontes F.M., Maurera M.A., Souza A.G., Preparation structural and optical characterization of BaWO4 and PbWO4 thin films prepared by a chemical route, J. Eur. Cer. Soc., 23, pp. 3001-3007, (2003)
  • [6] Voronina I.S., Ivlela L.I., Basiev T.T., Active Raman media: SrWO<sub>4</sub>:Nd<sup>3+</sup>, BaWO<sub>4</sub>:Nd<sup>3+</sup>. Growth and characterization, J. Optoelectron. Adv. Mater., 5, pp. 887-892, (2003)
  • [7] Niki M., Bohace K.P., Mihokova E., Exitonic emission of scheelite tungstates AWO<sub>4</sub> (A = Ca, Ba, Sr), J. Lumin., 87, pp. 1136-1139, (2000)
  • [8] Vidya S., Solomon S., Thomas J.K., Synthesis characterization and low temperature sintering of nanostructured BaWO<sub>4</sub> for optical and LTCC applications, Adv. Condens. Matter Phys., 2013, (2013)
  • [9] Jaffer Sddiq M.M., Samson Nesaraj A., Soft chemical synthesis and characterization of BaWO<sub>4</sub> nanoparticles for photocatalytic removal of Rhodamine B present in water sample, J. Nanostr. Chem., 5, pp. 45-54, (2015)
  • [10] Gmelin Handbuch Der Anorganischen Chemie, (1980)