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1.

Ca/Sr ratio dependent structure and up-conversion luminescence of (Ca1-xSrx)In2O4 : Yb3+/Ho3+ phosphors/M. Guan [et al.] // RSC Advances:Royal Society of Chemistry, 2015. т.Vol. 5,N Is. 73.-С.59403-59407
2.

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
3.

Crystal structure of NaLuW2O8·2H2O and down/upconversion luminescence of the derived NaLu(WO4)2:Yb/Ln phosphors (Ln = Ho, Er, Tm)/X. Shi [et al.] // Inorganic Chemistry, 2018. т.Vol. 57,N Is. 17.-С.10791-10801
4.

Double-site occupation triggered broadband and tunable NIR-I and NIR-II luminescence in AlNbO4:Cr3+ phosphors/K. Lyu, G. Liu, M. S. Molokeev, Z. Xia // Advanced Physics Research, 2023. т.Vol. 2,N Is. 4.- Ст.2200056
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.

High-efficiency continuous-luminescence-controllable performance and antithermal quenching in Bi3+-activated phosphors/P. Gao, Q. Li, C. Zhou [et al.] // Inorganic Chemistry, 2022. т.Vol. 61,N Is. 33.-С.13104-13114
7.

Luminescence of monoclinic Y2O3:Eu nanophosphor produced via laser vaporization/A. I. Kostyukov, V. N. Snytnikov, V. N. Snytnikov [et al.] // Optical Materials, 2020. т.Vol. 104.- Ст.109843
8.

NaLaW2O7(OH)2(H2O): Crystal structure and RE3+ luminescence in the pristine and annealed double tungstates (RE = Eu, Tb, Sm, and Dy)/X. Wang [et al.] // Inorganic Chemistry, 2018. т.Vol. 57,N Is. 21.-С.13606–13617
9.

Narrow bandwidth luminescence in Sr2Li(Al,Ga)O4:Eu2+ by selective site occupancy engineering for high definition displays/J. Qiao, Y. Zhou, M. S. Molokeev [et al.] // Laser and Photonics Reviews, 2021. т.Vol. 15,N Is. 11.- Ст.2100392
10.

Near-infrared luminescence and color tunable chromophores based on Cr3+-Doped Mullite-Type Bi2(Ga,Al)4O9 solid solutions/C. Liu [et al.] // Inorganic Chemistry:American Chemical Society, 2015. т.Vol. 54,N Is. 4.-С.1876-1882
11.

Photoluminescence of monoclinic Li3AlF6 crystals under vacuum ultraviolet and soft X-ray excitations/V. A. Pustovarov [et al.] // Optical Materials:Elsevier, 2015. т.Vol. 49.-С.201-207
12.

Preparation, crystal structure and up-conversion luminescence of Er3+, Yb3+ co-doped Gd2(WO4)3/M. Yin [et al.] // RSC Advances:Royal Society of Chemistry, 2015. т.Vol. 5,N Is. 89.-С.73077-73082
13.

Preparation, structure, and up-conversion luminescence of Yb3+/Er3+ codoped SrIn2O4 phosphors/M. Guan [et al.] // Journal of the American Ceramic Society:Wiley-Blackwell, 2015. т.Vol. 98,N Is. 4.-С.1182-1187
14.

Pure red upconversion luminescence and optical thermometry of Er3+ doped sensitizer-rich SrYbInO4 phosphors/N. Z. Zhang [et al.] // Journal of Materials Chemistry C, 2018. т.Vol. 6,N Is. 27.-С.7361-7366
15.

Redefinition of crystal structure and Bi3+ yellow luminescence with strong near-ultraviolet excitation in La3BWO9:Bi3+ phosphor for white light-emitting diodes/J. Han [et al.] // ACS Applied Materials and Interfaces, 2018. т.Vol. 10,N Is. 16.-С.13660-13668
16.

Reply to comment on “Tuning of photoluminescence and local structures of substituted cations in xSr2Ca(PO4)2-(1-x)Ca10Li(PO4)7:Eu2+ phosphors”/M. Chen [et al.] // Chemistry of Materials:American Chemical Society, 2017. т.Vol. 29,N Is. 8.-С.3803-3805
17.

Synthesis, crystal structure and green luminescence in zero-dimensional tin halide (C8H14N2)2SnBr6/B. Su, G. Song, M. S. Molokeev [et al.] // Inorganic Chemistry, 2020. т.Vol. 59,N Is. 14.-С.9962–9968
18.

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
19.

Tuning of photoluminescence and local structures of substituted cations in xSr2Ca(PO4)2-(1 - x)Ca10Li(PO4)7:Eu2+ phosphors/M. Chen [et al.] // Chemistry of Materials:American Chemical Society, 2017. т.Vol. 29,N Is. 3.-С.1430-1438
20.

Ultrabroadband red luminescence of Mn4+ in MgAl2O4 peaking at 651 nm/H. P. Ji, X. H. Hou, M. S. Molokeev [et al.] // Dalton Transactions, 2020. т.Vol. 49,N Is. 17.-С.5711-5721
 

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