[1] LI Y, YIN Y, WANG T, et al. Ultra-bright green-emitting phosphors with an internal quantum efficiency of over 90% for high-quality WLEDs[J]. Dalton Transactions, 2021, 50(12): 4159-4166. [2] LIN Y, WANG G E, LI L N, et al. Rare-earth-free Barium borostannate with deep-blue light emission[J]. Chemistry of Materials, 2021, 33(5): 1852-1859. [3] ZHANG X T, ZHANG D, ZHENG B F, et al. Luminescence and energy transfer of color-tunable Y2Mg2Al2Si2O12∶Eu2+, Ce3+ phosphors[J]. Inorganic Chemistry, 2021, 60(8): 5908-5916. [4] KHAN W U, MANE S B, KHAN S U, et al. Ca3Lu(AlO)3(BO3)4∶Sm3+: a novel red-emitting phosphor with high colour purity for NUV-based warm white LEDs[J]. RSC Advances, 2018, 8(71): 40693-40700. [5] WANG S Y, DEVAKUMAR B, SUN Q, et al. Highly efficient near-UV-excitable Ca2YHf2Al3O12∶Ce3+, Tb3+ green-emitting garnet phosphors with potential application in high color rendering warm-white LEDs[J]. Journal of Materials Chemistry C, 2020, 8(13): 4408-4420. [6] LIANG J, DEVAKUMAR B, SUN L L, et al. Full-visible-spectrum lighting enabled by an excellent cyan-emitting garnet phosphor[J]. Journal of Materials Chemistry C, 2020, 8(14): 4934-4943. [7] LIU N, MEI L F, LIAO L B, et al. High thermal stability apatite phosphors Ca2La8(SiO4)6O2∶Dy3+/Sm3+ for white light emission: synthesis, structure, luminescence properties and energy transfer[J]. Scientific Reports, 2019, 9: 15509. [8] JIA Z, XIA M J. Blue-green tunable color of Ce3+/Tb3+ coactivated NaBa3La3Si6O20 phosphor via energy transfer[J]. Scientific Reports, 2016, 6: 33283. [9] 何 玲,魏小娟,李文生,等.白光LED用白光荧光粉Gd2MoB2O9∶Eu3+,Tb3+的制备及其发光性能研究[J].功能材料,2014,45(3):3051-3055. HE L, WEI X J, LI W S, et al. Synthesis and photoluminescence of a full-color emitting phosphor Gd2MoB2O9∶Eu3+, Tb3+for white light LEDs[J]. Journal of Functional Materials, 2014, 45(3): 3051-3055(in Chinese). [10] XU C Y, SONG Y H, GUAN H X, et al. The photoluminescence, thermal properties and tunable color of Na1-xAl1+2xSi1-2xO4∶xCe3+/Tb3+/Dy3+ via energy transfer: a single-component multicolor-emitting phosphor[J]. Physical Chemistry Chemical Physics, 2017, 19(33): 22197-22209. [11] 谢会东,谭玉荣,苏彬彬,等.La2-x-yMgTiO6∶xDy3+,yEu3+白色荧光粉的荧光性能及能量传递[J].发光学报,2019,40(6):713-718. XIE H D, TAN Y R, SU B B, et al. Luminescent properties and energy transfer of La2-x-yMgTiO6∶xDy3+, yEu3+ white phosphors[J]. Chinese Journal of Luminescence, 2019, 40(6): 713-718(in Chinese). [12] 孙晓园,范小暄,何俊杰,等.CaLuBO4∶Tb3+荧光粉的制备及发光性质[J].发光学报,2020,41(3):265-270. SUN X Y, FAN X X, HE J J, et al. Preparation and photoluminescence properties of CaLuBO4∶Tb3+ phosphor[J]. Chinese Journal of Luminescence, 2020, 41(3): 265-270(in Chinese). [13] HAN B, LIU B B, DU J P, et al. K3YB6O12∶Ce3+, Tb3+: a near-ultraviolet-excitable emission-tunable phosphor for white light-emitting diodes[J]. Optics & Laser Technology, 2019, 113: 211-216. [14] RAJAGOPAL V, HUANG X Y, WU Y C. Tunable luminescence and energy transfer in novel blue-green-emitting BaGd2Si3O10∶Ce3+, Tb3+ phosphors for near-UV-based white LEDs[J]. ACS Omega, 2019, 4(2): 4384-4389. [15] 周鑫荣,何大伟,王永生.Dy3+掺杂的硅酸盐荧光粉发光光谱的研究[J].人工晶体学报,2009,38(S1):28-31. ZHOU X R, HE D W, WANG Y S. Investigation on luminescence spectra of M2SiO4∶Dy3+(M=Ca, Sr, Ba) phosphor[J]. Journal of Synthetic Crystals, 2009, 38(S1): 28-31(in Chinese). [16] TAKEDA Y, KATO H, KOBAYASHI M, et al. Photoluminescence properties of double perovskite tantalates activated with Mn4+, AE2LaTaO6∶Mn4+ (AE=Ca, Sr, and Ba)[J]. The Journal of Physical Chemistry C, 2017, 121(34): 18837-18844. [17] ZHANG Z J, SUN L L, DEVAKUMAR B, et al. Synthesis and photoluminescence properties of a new blue-light-excitable red phosphor Ca2LaTaO6∶Eu3+ for white LEDs[J]. Journal of Luminescence, 2020, 222: 117173. [18] CAO R P, CHEN T, REN Y C, et al. Synthesis and photoluminescence properties of Ca2LaTaO6∶Mn4+ phosphor for plant growth LEDs[J]. Journal of Alloys and Compounds, 2019, 780: 749-755. [19] YE J X, SUN J J, ZHANG T X, et al. Fabrication and luminescence of Ca2LaTaO6∶RE3+ (RE=Sm, Eu and Pr) phosphors[J]. Chemical Physics Letters, 2020, 758: 137923. [20] SHANNON R D. Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides[J]. Acta Crystallographica Section A, 1976, 32(5): 751-767. [21] YAN B, WANG G G, LIU L F, et al. Color-tunable Al6Si2O13∶Eu2+, Mn2+ phosphor with high color rendering index based on energy transfer for warm white LEDs[J]. New Journal of Chemistry, 2018, 42(18): 15207-15214. [22] BLASSE G. Energy transfer in oxidic phosphors[J]. Physics Letters A, 1968, 28(6): 444-445. [23] DEXTER D L, SCHULMAN J H. Theory of concentration quenching in inorganic phosphors[J]. The Journal of Chemical Physics, 1954, 22(6): 1063-1070. [24] REISFELD R, LIEBLICH-SOFFER N. Energy transfer from UO22+ to Sm3+ in phosphate glass[J]. Journal of Solid State Chemistry, 1979, 28(3): 391-395. |