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1.

Crystal structure evolution and luminescence properties of color tunable solid solution phosphors Ca2+xLa8-x(SiO4)6-x(PO4)xO2:Eu2+/Y. Xia [et al.] // Dalton Transactions:Royal Society of Chemistry, 2016. т.Vol. 45,N Is. 3.-С.1007-1015
2.

Crystal structure and luminescence properties of novel Sr10−x(SiO4)3(SO4)3O:xEu2+ phosphor with apatite structure/Q. F. Guo [et al.] // Ceramics International:Elsevier Science, 2016. т.Vol. 42,N Is. 10.-С.11687-11691
3.

Insights into Ba4Si6O16 structure and photoluminescence tuning of Ba4Si6O16:Ce3+,Eu2+ phosphors/Chen M. [et al.] // Journal of Materials Chemistry C:Royal Society of Chemistry, 2015. т.Vol. 3,N Is. 48.-С.12477-12483
4.

Structural phase transformation and luminescent properties of Ca2-xSrxSiO4:Ce3+ orthosilicate phosphors/M. Chen [et al.] // Inorganic Chemistry:American Chemical Society, 2015. т.Vol. 54,N Is. 23.-С.11369-11376
5.

Eu2+ site preferences in the mixed cation K2BaCa(PO4)2 and thermally stable luminescence/J. W. Qiao [et al.] // Journal of the American Chemical Society, 2018. т.Vol. 140,N Is. 30.-С.9730-9736
6.

Altunin R. R. Effect of the structural properties on the electrical resistivity of the Al/Ag thin films during the solid-state reaction/R. R. Altunin, E. T. Moiseenko, S. M. Zharkov // Physics of the Solid State, 2020. т.Vol. 62,N Is. 4.-С.708-713
7.

Morphology and phase transformation from NaCaSiO3OH to Na2Ca2Si2O7 and photoluminescence evolution: Via Eu3+/Tb3+ doping/M. Chen [et al.] // Chemical Communications:Royal Society of Chemistry, 2016. т.Vol. 52,N Is. 75.-С.11292-11295
8.

Controllable two-dimensional luminescence tuning in Eu2+,Mn2+ doped (Ca,Sr)9Sc(PO4)7 based on crystal field regulation and energy transfer/S. S. Liang [et al.] // Journal of Materials Chemistry C, 2018. т.Vol. 6,N Is. 25.-С.6714-6725
9.

Pressure-stimulated synthesis and luminescence properties of microcrystalline (Lu,Y)3Al5O12:Ce3+ garnet phosphors/V. V. Atuchin [et al.] // ACS Applied Materials and Interfaces:American Chemical Society, 2015. т.Vol. 7,N Is. 47.-С.26235-26243
10.

Cation substitution dependent bimodal photoluminescence in whitlockite structural Ca3-xSrx(PO4)2:Eu2+ (0 ≤ x ≤ 2) solid solution phosphors/H. P. Ji [et al.] // Inorganic Chemistry:American Chemical Society, 2014. т.Vol. 53,N Is. 20.-С.11119-11124
11.

Discovery of new solid solution phosphors via cation substitution-dependent phase transition in M-3(PO4)2:Eu2+ (M =Ca/Sr/Ba) quasi-binary sets/H. P. Ji [et al.] // Journal of Physical Chemistry C:American Chemical Society, 2015. т.Vol. 119,N Is. 4.-С.2038-2045
12.

Photoluminescence tuning via cation substitution in oxonitridosilicate phosphors: DFT calculations, different site occupations, and luminescence mechanisms/G. Li [et al.] // Chemistry of Materials:American Chemical Society, 2014. т.Vol. 26,N Is. 9.-С.2991-3001
13.

Synthesis and luminescence properties of Li2O–Y2O3–TeO2:Eu3+ tellurite glass/V. V. Atuchin [et al.] // Materials Chemistry and Physics:Elsevier Science, 2014. т.Vol. 147,N Is. 3.-С.1191-1194
14.

Synthesis, crystal structure, and enhanced luminescence of garnet-type Ca3Ga2Ge3O12:Cr3+ by codoping Bi3+/C. Y. Liu [et al.] // Journal of the American Ceramic Society:Wiley-Blackwell, 2015. т.Vol. 98,N Is. 6.-С.1870-1876
15.

Color tunable emission and energy transfer of Ce3+ and Tb3+ co-doped novel La6Sr4(SiO4)6F2 phosphors with apatite structure/Q. Guo [et al.] // Materials Research Bulletin:Elsevier, 2015. т.Vol. 72.-С.245-251
16.

Effect of Al/Si substitution on the structure and luminescence properties of CaSrSiO4:Ce3+ phosphors: analysis based on the polyhedra distortion/S. H. Miao [et al.] // Journal of Materials Chemistry C:Royal Society of Chemistry, 2015. т.Vol. 3,N Is. 18.-С.4616-4622
17.

Comparative investigations of the crystal structure and photoluminescence property of eulytite-type Ba3Eu(PO4)3 and Sr3Eu(PO4)3/H. P. Ji [et al.] // Dalton Transactions:Royal Society of Chemistry, 2015. т.Vol. 44,N Is. 16.-С.7679-7686
 

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