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1.

Ferroelectricity in caesium lithium molybdate CsLiMoO4 and related crystals CsLiWO4 and RbLiMoO4/K. S. Aleksandrov [и др.] // Ferroelectrics, 1981. т.Vol. 36,N Is. 1.-С.399-402
2.

Ferroelectricity in CS-Li molybdate crystals/K. S. Aleksandrov [и др.] // Fizika Tverdogo Tela:Mezhdunarodnaya kniga, 1982. т.Vol. 24,N Is. 4.-С.1094-1101
3.

Aleksandrov K. S. Spectroscopic investigation of phase transitions in CsLiMoO//4 crystals./K. S. Aleksandrov, Yu. N. Ivanov, A. D. Schafer // Ferroelectrics, 1983. т.Vol. 55,N Is. 1.-С.671-674
4.

Synthesis and crystal structure analysis of binary molybdate CsNaMoO4В·2H2O/P. V. Klevtsov [et al.] // Journal of Structural Chemistry, 1997. т.Vol. 38,N Is. 4.-С.615-619
5.

Synthesis, structural and vibrational properties of microcrystalline RbNd(MoO4)(2)/V. V. Atuchin [et al.] // Journal of Crystal Growth:Elsevier Science BV, 2011. т.Vol. 318,N Is. 1.-С.683-686
6.

Synthesis and electronic structure of orthorhombic molybdate RbNd(MoO4)2/V. V. Atuchin [et al.] // The 3rd Int. Conf. on the Physics of Optical Materials and Devices. ICOM 2012, 2012.-С.209
7.

Synthesis and electronic properties of β-RbNd(MoO4)2/V. V. Atuchin [et al.] // Asian Journal of Chemistry, 2014. т.Vol. 26,N No. 5.-С.1284-1286
8.

Synthesis and spectroscopic properties of multiferroic β΄-Tb2(MoO4)3/V. V. Atuchin [et al.] // Optical Materials:Elsevier Science, 2014. т.Vol. 36,N Is. 10.-С.1631–1635
9.

Synthesis and spectroscopic properties of monoclinic α-Eu2(MoO4)3/V. V. Atuchin [et al.] // Journal of Physical Chemistry C:American Chemical Society, 2014. т.Vol. 118,N Is. 28.-С.15404-15411
10.

Electronic structure of β-RbNd(MoO4)2 by XPS and XES/V. V. Atuchin [et al.] // Journal of Physics and Chemistry of Solids, 2015. т.Vol. 77.-С.101-108
11.

Synthesis, structural and spectroscopic properties of acentric triple molybdate Cs2NaBi(MoO4)3/A. A. Savina [et al.] // Journal of Solid State Chemistry, 2015. т.Vol. 225.-С.53–58
12.

Triple molybdate scheelite-type upconversion phosphor NaCaLa(MoO4)3:Er3+/Yb3+: Structural and spectroscopic properties/C. S. Lim [et al.] // Dalton Transactions:Royal Society of Chemistry, 2016. т.Vol. 45,N Is. 39.-С.15541-15551
13.

Structural and spectroscopic properties of self-activated monoclinic molybdate BaSm2(MoO4)4/V. V. Atuchin [et al.] // Journal of Alloys and Compounds:Elsevier, 2017. т.Vol. 729.-С.843-849
14.

Microwave synthesis and spectroscopic properties of ternary scheelite-type molybdate phosphors NaSrLa(MoO4)3:Er3+,Yb3+/C. S. Lim [et al.] // Journal of Alloys and Compounds:Elsevier, 2017. т.Vol. 713.-С.156-163
15.

Incommensurately modulated structure and spectroscopic properties of CaGd2(MoO4)4:Ho3+/Yb3+ phosphors for up-conversion applications/C. S. Lim [et al.] // Journal of Alloys and Compounds:Elsevier, 2017. т.Vol. 695.-С.737-746
16.

Exploration of structural, vibrational and spectroscopic properties of self-activated orthorhombic double molybdate RbEu(MoO4)2 with isolated MoO4 units/V. V. Atuchin, A. S. Aleksandrovsky, B. G. Bazarov [et al.] // Journal of Alloys and Compounds, 2019. т.Vol. 785.-С.692-697
17.

Thermometry and up-conversion luminescence of Ln3+ (Ln = Er, Ho, Tm)-doped double molybdate LiYbMo2O8/X. Y. Yun, J. Zhou, Y. H. Zhu [et al.] // Journal of Materials Science: Materials in Electronics, 2020. т.Vol. 31,N Is. 21.-С.18370-18380
18.

Exploration of the structural and vibrational properties of the ternary molybdate Tl5BiHf(MoO4)6with isolated MoO4 units and Tl+ conductivity/V. Grossman, S. V. Adichtchev, V. V. Atuchin [et al.] // Inorganic Chemistry, 2020. т.Vol. 59,N Is. 17.-С.12681-12689
19.

Microwave-employed sol–gel synthesis of scheelite-type microcrystalline AgGd(MoO4)2:Yb3+/Ho3+ upconversion yellow phosphors and their spectroscopic properties/C. S. Lim, A. Aleksandrovsky, V. Atuchin [et al.] // Crystals, 2020. т.Vol. 10,N Is. 11.- Ст.1000.-С.1-14
20.

Microwave sol-gel synthesis, microstructural and spectroscopic properties of scheelite-type ternary molybdate upconversion phosphor NaPbLa(MoO4)3:Er3+/Yb3+/C. S. Lim [et al.] // Journal of Alloys and Compounds, 2020. т.Vol. 826.- Ст.152095
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