2023
DOI: 10.1016/j.jlumin.2022.119570
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Synthesis and characterizations of a color tunable single-phased warm white phosphor Sr3Lu(BO3)3: Bi3+, Eu3+

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Cited by 14 publications
(5 citation statements)
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“…Hence, the results further illustrated that the thermal quenching property of BLB:0.02Ce 3+ ,0.20Tb 3+ is better than that of BLB:0.02Ce 3+ ,0.10Mn 2+ , which is higher than the isostructural Ba 3 Sc­(BO 3 ) 3 :0.02Ce 3+ ,0.20Tb 3+ . The thermal quenching property of the samples (BLB:0.02Ce 3+ ,0.10Mn 2+ and BLB:0.02Ce 3+ ,0.20Tb 3+ ) is better than the most borate-based phosphors that have been published …”
Section: Resultsmentioning
confidence: 93%
“…Hence, the results further illustrated that the thermal quenching property of BLB:0.02Ce 3+ ,0.20Tb 3+ is better than that of BLB:0.02Ce 3+ ,0.10Mn 2+ , which is higher than the isostructural Ba 3 Sc­(BO 3 ) 3 :0.02Ce 3+ ,0.20Tb 3+ . The thermal quenching property of the samples (BLB:0.02Ce 3+ ,0.10Mn 2+ and BLB:0.02Ce 3+ ,0.20Tb 3+ ) is better than the most borate-based phosphors that have been published …”
Section: Resultsmentioning
confidence: 93%
“…Note that several compounds reported in the archival literature do not appear in Table 5 because their crystal structure is either not available ( e.g. Ln 2 SO 6 (Ln = Y, Lu), 17 Sr 3 YAl 2 O 7.5 , 71 BaLa 2 Si 3 O 10 , 72 Sr 2 GdAlO 5 , 27 SrLaBO 4 , 73 LiLuSiO 4 , 74 Sr 3 Lu(BO 3 ) 3 , 75 LiYGeO 4 , 76 Ba 3 Sc 4 O 9 , 77 Ba 2 Ga 2 GeO 7 , 78 Gd 2 MgTiO 6 79 ) or too complex for the calculator that we have designed in this work ( e.g. Sr 2 V 2 O 7 (ICSD-10330), 80 Ba 3 Y 4 O 9 (ICSD-230718), 81 K 2 MgGeO 4 (MP-1212053), 82 Y 4 Al 2 O 9 (ICSD-63650) 83 Ba 2 Y 5 B 5 O 17 (ICSD-8356), 84 Na 3 YSi 3 O 9 (ICSD-20774), 85 Ca 3 Al 4 ZnO 10 (ICSD-120597), 86 CdSiO 3 (ICSD-170703), 87 Sr 3 Sc 4 O 9 , 88 AMB 5 O 10 with M = La, Gd, Y and A = Mg, Zn, and Cd, 89 Li 2 BaP 2 O 7 (ICSD-280927), 90 and MP 3 O 9 with M = Sc, Y, Lu).…”
Section: The Excitation Of Bi3+ In Solids: Locating the A State From ...mentioning
confidence: 99%
“…14 Currently, many studies have found that using a single-phase white phosphor is an effective solution in overcoming the aforementioned drawbacks, which is considered to be an efficient way to achieve high-quality white light emission. [15][16][17] Currently, there are primarily two effective methods for preparing single-phase white light emitting fluorescent powders. One approach involves incorporating one kind of activator ion into a matrix with multiple suitable doping positions, where the activator produces different emission bands in different lattice sites to achieve full coverage of the visible spectrum.…”
Section: Introductionmentioning
confidence: 99%
“…14 Currently, many studies have found that using a single-phase white phosphor is an effective solution in overcoming the aforementioned drawbacks, which is considered to be an efficient way to achieve high-quality white light emission. 15–17…”
Section: Introductionmentioning
confidence: 99%