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[1]敖宇辰, 王谨, 蔡格梅, 无机应力发光材料的发光特性、发光机理及应用研究进展.发光学报, 2023, 44 (06) : 942-963.
[2]Q.H. Yang, H.Q. Wei, G.M. Cai, et al., Recent Developments of Lead-Free Halide-Perovskite Cs3Cu2X5 (X = Cl, Br, I): Synthesis, Modifications, and Applications.Materials Today Physics, 2023, 36: 101143.
[3]G.H. Li, G.M. Cai, X.J. Wang, et al., Cation defects succeed in triggering super stability of narrow-band blue-emitting phosphors Ca3Sc2Si3O12: Bi3+ for backlighting display application.Ceramics International, 2023, 49: 28159-28166.
[4]R.R. Wang, G.M. Cai, et al., Anti-thermal Quenching Phosphors Based on the New Phosphate Host Ca3.6In3.6(PO4)6.Dalton Transactions, 2023, 52: 5552.
[5]J.B. Huang, G.M. Cai, Shooting mid-infrared nonlinear optical materials with targeted balance performances in ternary d0-transition metal oxides through first-principles.Materials Today Physics, 2023, 33: 101033.
[6]R.R. Wang, G.M. Cai, et al., Thermal-stability Synergy Improvement of Sm3+ and Eu3+ in Ca3.6In3.6(PO4)6: the Effect of Local Symmetry.Journal of Materials Chemistry C, 2023, 11: 3616-3625.
[7]G.H. Li, G.M. Cai, et al., Structure and luminescence of Ba3Eu2(BO3)4: F phosphors for WLEDs and FIR optical temperature sensor.Journal of Alloys and Compounds, 2023, 944: 169159.
[8]Bo Ye, Jing Zhang, Gemei Cai, Mixed occupation, double valence and tunable emission of Eu in BaIn2(P2O7)2.Journal of Luminescence, 2022, 255: 119603.
[9]X.M. Huang, G.M. Cai, H.S. Liu, et al., Study on the evolution of phase relations in the Ti–Al–Nb_Cr systems at 0–50 at.% Al region.CALPHAD, 2022, 79: 102461.
[10]Y.J. Liu, G.M. Cai, et al., The tri-emitting phosphate phosphors SrIn2(P2O7)2: Tm, Dy, Eu for ratiometric optical thermometer.Journal of the American Ceramic Society, 2022, 105: 6184-6195.
[11]Shun-Xin Zhang, Ge-Mei Cai, The strategy of design and preparation for outstanding precipitation strengthened HEAs based on diffusion couple.Materials & Design, 2022, 217: 110667.
[12]Shan Shu, J.B. Huang, Gemei Cai, Screening nitrides with high Debye temperatures as nonlinear optical materials.Journal of Physical Chemistry C, 2022, 126: 7047-7053.
[13]J.B. Huang, S. Shu, G.M. Cai, Review of heteroleptic tetrahedra as birefringent or nonlinear optical motifs.Crystal Growth & Design, 2022, 22: 1500-1514.
[14]X.M. Huang, G.M. Cai, H.S. Liu, Phase equilibria and transformation in the Ti–Al–Ta system.Journal of Materials Science, 2022, 57: 2163–2179.
[15]G.H. Li, G.M. Cai, et al., Enhancement of Eu2+ photoluminescence behavior in NaBaB9O15 based on the K+ doping.Journal of Luminescence, 2022, 243: 118613.
[16]Y.J. Liu, G.M. Cai, et al., Dependence of luminous performance on Eu3+ site occupation in SrIn2(P2O7)2: the effect of the local environment.Inorganic Chemistry, 2021, 60: 17219-17229.
[17]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.
[18]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.
[19]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.
[20]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.
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