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- W3065404891 endingPage "111040" @default.
- W3065404891 startingPage "111040" @default.
- W3065404891 abstract "Novel far-red emission Li6SrLa2Sb2O12: Mn4+ garnet-like phosphors have been synthesized via traditional high-temperature solid-state reaction method. The as-prepared Li6SrLa2Sb2O12: Mn4+ phosphor has a broad excitation band in the range of 300−600 nm with four Gaussian fitting bands peaking at around 325 nm, 364 nm, 429 nm and 501 nm, respectively. It gives far-red emission peaking at 705 nm under both UV and blue-green excitation. The optimum doping concentration of Mn4+ is about x = 0.01 and beyond which the luminescence quenching takes place, caused by the dipole-dipole interaction induced energy transfer among the Mn4+ ions. When the temperature is raised up to 370 K, the emission intensity of Li6SrLa2Sb2O12: 0.01 Mn4+ drops to 50 % of that at room temperature. The investigation shows that Li6SrLa2Sb2O12: Mn4+ is a potential red phosphor matching NUV LED chips for plant growth application." @default.
- W3065404891 created "2020-08-24" @default.
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- W3065404891 date "2021-01-01" @default.
- W3065404891 modified "2023-10-17" @default.
- W3065404891 title "Far-red-emitting Li6SrLa2Sb2O12: Mn4+ phosphor for plant growth LEDs application" @default.
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- W3065404891 doi "https://doi.org/10.1016/j.materresbull.2020.111040" @default.
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