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[21]J.H. Li, G.M. Cai, et al., Experimental investigation of phase equilibria in the Cu-Cr-Ti system.J. Phase Equilib. Diffus., 2021, 42: 389–402.
[22]Y.J. Liu, G.M. Cai, et al., Daylight-White-Emitting and Abnormal Thermal Antiquenching Phosphors Based on a Layered Host SrIn2(P2O7)2.Inorg. Chem., 2021, 60: 2279-2293.
[23]X.M. Huang, G.M. Cai, H.S. Liu, et al., Phase relation and transition in the Ti-Al-Mn system.Journal of Alloys and Compounds, 2021, 861: 158578.
[24]Liumei Su, G.M. Cai, X.J. Wang, et al., Multicolor emission leading by energy transfer between Dy3+ and Eu3+ in wolframite InNbTiO6.J. Lumin., 2020, 227: 117578.
[25]Guihua Li, Gemei Cai, Xiaojun Wang, The non-concentration-quenching phosphor Ca3Eu2B4O12 for WLED application.Inorg. Chem., 2020, 59: 3894-3904.
[26]Nian Yang, Guihua Li, Gemei Cai, Efficient and stable Sr3Eu2B4O12 red phosphor benefiting from low symmetry and distorted local environment.Dalton Transactions, 2020, 49: 3260-3271.
[27]Jing Zhang, Gemei Cai, Xiaojun Wang, Tuning of Emission by Eu3+ Concentration in a Pyrophosphate: the Effect of Local Symmetry.Inorg. Chem., 2020, 59: 2241-2247.
[28]L.M. Su, G.M. Cai, X.J. Wang, et al., Structure and luminescent properties of new Dy3+/Eu3+/Sm3+-activated InNbTiO6 phosphors for white UV-LEDs.Optical Materials, 2019, 98: 109403.
[29]J. Zhang, G.M. Cai, X.J. Wang, et al., Red-green-blue-tunable emission from Eu3+ and Tb3+ codoped pyrophosphate phosphors.Journal of Luminescence, 2019, 215: 116732.
[30]T. Hu, G.M. Cai, et al., Experimental investigation of phase relationship in Ti-Fe-Hf ternary system.CALPHAD, 2019, 67: 101669.
[31]G.X. Zhang, G.M. Cai, et al., Structure and luminescence properties of multicolor phosphors with excellent thermal stability based on a new phosphate Ba3In4(PO4)6.JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 797: 775-785.
[32]X.M. Huang, G.M. Cai, et al., Experimental investigation of phase equilibria in the Tb-Si-Cr system.CALPHAD, 2019, 65: 212-224.
[33]L.L. Zhu, G.M. Cai, J.C. Zhao, et al., Measurement of Diffusion Coefficients in the bcc Phase of the Ti-Sn and Zr-Sn Binary Systems.Metall. Mater. Trans. A, 2019, 50: 1409-1420.
[34]J. Zhang, G.M. Cai, et al., Reduction of Ce(IV) to Ce(III) Induced by Structural Characteristics and Performance Characterization of Pyrophosphate MgIn2P4O14-based Phosphors.J. Lumin., 2018, 203: 590-598.
[35]X.M. Huang, G.M. Cai, H.S. Liu, et al., Experimental investigation and thermodynamic calculation of Ti-Co-Hf system.CALPHAD, 2018, 62: 128-140.
[36]J. Zhang, G.M. Cai, et al., Insight into crystal structure and Eu/Tb doped luminescence property of a new phosphate.J. Alloys Compd., 2018, 762: 444-455.
[37]H. Pei, G.M. Cai, et al., Modification of YNbO4 and YNbTiO6 photoluminescence by nitrogen doping.AIP Advances, 2018, 8: 045107.
[38]J.L. Liu, G.M. Cai, et al., Experimental investigation on phase equilibria of Cu-Ti-Hf system and performance of Cu(Ti, Hf)2 phase.J. Mater. Sci., 2018, 53: 7809-7821.
[39]Z.X. Wang, G.M. Cai, et al., Enhanced scintillation of Ba3In(B3O6)3 based on nitrogen doping.J. Solid State Chem., 2018, 258: 351-357.
[40]Jing Zhang, Ge-Mei Cai, Layered crystal structure, color-tunable photoluminescence, and excellent thermal stability of MgIn2P4O14 phosphate-based phosphors[J].Inorganic Chemistry, 2017 (56) : 12902-12913.
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