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Host emission from BaMgAl10O17 and SrMgAl10O17 phosphor: Effects of temperature and defect level
Authors:Hiroaki Onuma  Hiroaki Tanno  Ai Suzuki  Riadh Sahnoun  Michihisa Koyama  Hideyuki Tsuboi  Nozomu Hatakeyama  Akira Endou  Hiromitsu Takaba  Carlos A Del Carpio  Momoji Kubo  Ramesh Chandra Deka  Hiroshi Kajiyama  Tsutae Shinoda  Akira Miyamoto
Affiliation:1. Department of Applied Chemistry, Graduate School of Engineering, Tohoku University, Japan;2. Department of Semiconductor Electronics and Integration Science, Graduate School of Advanced Science of Matter, Hiroshima University, Japan;3. New Industry Creation Hatchery Center, Tohoku University, Japan;4. Department of Applied Chemistry, Graduate School of Engineering, Tohoku University, Japan, and the New Industry Creation Hatchery Center, Tohoku University, 6‐6‐11‐1302 Aoba, Aramaki, Aoba‐ku, Sendai, Miyagi 980‐8579, Japan
Abstract:Abstract— Understanding the mechanism of blue‐light emission in Eu‐doped BAM phosphor as well as its sensitive degradation is required because this is a very important material in fluorescent lamps and plasma‐display panels. In this study, both theoretical and experimental investigations on the host emissions in BaMgAl10O17 and SrMgAl10O17 were performed. Host emissions from BaMgAl10O17 and SrMgAl10O17 by photoluminescence and thermoluminescence spectra were observed. Photoluminescence spectra suggested that the host emission from SrMgAl10O17 was easily quenched by thermal vibrations. The thermoluminescence spectra showed the existence of shallow and deep defect levels in BaMgAl10O17 and SrMgAl10O17 phosphors. It was shown that SrMgAl10O17 and its conduction plane could undergo degradation during irradiation of vacuum‐ultra‐violet (VUV) lights based on the calculated energy of formation of an oxygen vacancy. Moreover, the structural defects, such as oxygen vacancies, would cause localizing levels in the upper level in the valence band and in theconduction band. The results suggest the contribution of the host emission to the energy transfer to the Eu atoms would not be significant and the oxygen vacancies would act as the traps for excited carriers.
Keywords:BaMgAl10O17:Eu+2  SrMgAl10O17: Eu+2  photoluminescence spectra  thermoluminescence spectra  oxygen vacancy  defect level  thermal quenching  trap level  tight‐binding quantum chemistry calculation  computational chemistry
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