[1] LI Z W, ZHU G, LI S S, et al. Ultra-small Stokes shift induced thermal robust efficient blue-emitting alkaline phosphate phosphors for LWUV WLEDs[J]. Ceramics International, 2023, 49(13): 21510-21520. [2] LIU Z J, DONG Y J, FU M, et al. Highly efficient rare-earth free vanadate phosphors for WLEDs[J]. Dalton Transactions, 2023, 52(45): 16819-16828. [3] WANG C, XIN S Y, WANG X C, et al. Double substitution induced tunable photoluminescence in the Sr2Si5N8∶Eu phosphor lattice[J]. New Journal of Chemistry, 2015, 39(9): 6958-6964. [4] LI Z W, LI S S, XIN S Y, et al. A nitriding garnet structure cyan emitting phosphor Ca2(Y, Ce)Hf2(Al, Si)3(O, N)12 with high efficiency and excellent thermal stability[J]. Journal of Alloys and Compounds, 2023, 944: 169253. [5] 李 晴, 王林香, 柏云凤, 等. Na+, Dy3+, Eu3+掺杂YAG荧光粉的光学性能[J]. 人工晶体学报, 2021, 50(1): 43-52. LI Q, WANG L X, BAI Y F, et al. Optical properties of Na+, Dy3+ and Eu3+ doped YAG phosphors[J]. Journal of Synthetic Crystals, 2021, 50(1): 43-52 (in Chinese). [6] LI J Z, MA Z D, WANG F, et al. Synthesis and mechanoluminescent properties of submicro-sized Y3Al5O12∶Ce3+ particles[J]. Chemical Physics Letters, 2021, 775: 138664. [7] WU H Y, YANG C, ZHANG Z X, et al. Photoluminescence and thermoluminescence of Ce3+ incorporated Y3Al5O12 synthesized by rapid combustion[J]. Optik, 2016, 127(3): 1368-1371. [8] LV L, HE J S, XIAO Q, et al. Synthesis and optical properties of Y3Al5O12∶Ce3+, Cr3+ nano-phosphor for white LED[J]. Ceramics International, 2023, 49(17): 28457-28464. [9] SHAO B H, WANG C. BaCa13Mg2(SiO4)8∶Ce3+—a blue phosphor with high brightness, high internal quantum efficiency and excellent thermal stability for w-LEDs[J]. Ceramics International, 2023, 49(11): 19301-19308. [10] NIU Z, LI Q L, YU B C, et al. Na1.5Y2.5F9∶Ce3+, Tb3+, Eu3+ glass-ceramics for white light[J]. Ceramics International, 2023, 49(8): 12540-12550. [11] ZHANG X G, ZHANG J L, CHEN Y B. Broadband-excited and efficient blue/green/red-emitting Ba2Y5B5O17∶Ce3+, Tb3+, Eu3+ phosphors using Tb3+-bridged Ce3+-Eu3+ energy transfer[J]. Dyes and Pigments, 2018, 149: 696-706. [12] SHI R, LIU G K, LIANG H B, et al. Consequences of ET and MMCT on luminescence of Ce3+-, Eu3+-, and Tb3+-doped LiYSiO4[J]. Inorganic Chemistry, 2016, 55(15): 7777-7786. [13] MIN X, HUANG Z H, FANG M H, et al. Luminescence properties of self-activated M3(VO4)2 (M=Mg, Ca, Sr, and Ba) phosphors synthesized by solid-state reaction method[J]. Journal of Nanoscience and Nanotechnology, 2016, 16(4): 3684-3689. [14] QIAN T T, FAN B, WANG H L, et al. Structure and luminescence properties of Zn3V2O8 yellow phosphor for white light emitting diodes[J]. Chemical Physics Letters, 2019, 715: 34-39. [15] NAKAJIMA T, ISOBE M, TSUCHIYA T, et al. A revisit of photoluminescence property for vanadate oxides AVO3 (A: K, Rb and Cs) and M3V2O8 (M: Mg and Zn)[J]. Journal of Luminescence, 2009, 129(12): 1598-1601. [16] ZHANG X G, GUAN A X, ZHOU L Y, et al. Synthesis and luminescence study of Zn3V2O8∶Bi3+ yellow phosphor for solar spectral conversion[J]. International Journal of Applied Ceramic Technology, 2017, 14(3): 392-398. [17] CHEN H D, ZHOU J C, ZHANG H Q, et al. Broad-band emission and color tuning of Eu3+-doped LiCa2SrMgV3O12 phosphors for warm white light-emitting diodes[J]. Optical Materials, 2019, 89: 132-137. [18] HUANG X Y, WANG S Y, RTIMI S, et al. KCa2Mg2V3O12: a novel efficient rare-earth-free self-activated yellow-emitting phosphor[J]. Journal of Photochemistry and Photobiology A: Chemistry, 2020, 401: 112765. [19] HUANG X Y, GUO H. Finding a novel highly efficient Mn4+-activated Ca3La2W2O12 far-red emitting phosphor with excellent responsiveness to phytochrome PFR: towards indoor plant cultivation application[J]. Dyes and Pigments, 2018, 152: 36-42. [20] WANG S Y, SUN Q, DEVAKUMAR B, et al. Novel high color-purity Eu3+ -activated Ba3Lu4O9 red-emitting phosphors with high quantum efficiency and good thermal stability for warm white LEDs[J]. Journal of Luminescence, 2019, 209: 156-162. [21] BHARAT L K, JEON S K, KRISHNA K G, et al. Rare-earth free self-luminescent Ca2KZn2(VO4)3 phosphors for intense white light-emitting diodes[J]. Scientific Reports, 2017, 7: 42348. [22] 董玉娟, 邵渤淮, 杨斯涵, 等. Ta5+掺杂对Zn2V2O7发光材料发光性能的改性研究[J]. 渤海大学学报(自然科学版), 2023, 44(1): 38-44. DONG Y J, SHAO B H, YANG S H, et al. Development of Zn2V2O7 materials doped with Ta and study on their fluorescence properties[J]. Journal of Bohai University (Natural Science Edition), 2023, 44(1): 38-44 (in Chinese). |