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Mn2+-Based narrow-band green-emitting Cs3MnBr5 phosphor and the performance optimization by Zn2+ alloying

机译:MN2 +基于窄带绿色发射CS3MNBR5磷光体和Zn2 +合金化的性能优化

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摘要

To discover new narrow-band green-emitting phosphors is a challenge for backlighting light-emitting diodes (LEDs) used in liquid crystal displays (LCDs). The synthesis and optical properties of Cs3MnBr5 are demonstrated herein. The intrinsic Mn2+ luminescence without concentration quenching leads to intense green emission at 520 nm with narrow full width at half maximum of 42 nm and high photoluminescence quantum yield (PLQY) of 49% under the excitation at 460 nm. When a small amount of Zn2+ is introduced into Cs3MnBr5, the luminescence intensity decreases slightly. However, the thermal stability of Cs3MnBr5 is improved from 82% to 87% with the intensity values at 423 K compared to that at 298 K. The white LED device fabricated using Cs3Mn0.96Zn0.04Br5 (green) and K2SiF6:Mn4+ (red) phosphors with a blue LED chip exhibit a high luminous efficiency (107.76 lm W-1) and wide color gamut (101% National Television System Committee standard (NTSC) in Commission Internationale de L'Eclairage (CIE) 1931 color space), demonstrating its potential application in wide color gamut LCD backlights.
机译:为了发现新的窄带绿色发光荧光粉是一种挑战,用于在液晶显示器(LCD)中使用的光发光二极管(LED)。本文对CS3MNBR5的合成和光学性质进行了说明。没有浓缩猝灭的内在Mn2 +发光导致520nm处的强烈绿色发射,在460nm的激发下,在420nm的最大值为42nm的狭窄全宽,高42nm,高49%的高49%。当将少量Zn2 +引入CS3MNBR5时​​,发光强度略微降低。然而,CS3MNBR5的热稳定性从82%到87%提高,强度值423 k相比,在298k时相比。使用CS3MN0.96ZN0.04BR5(绿色)和K2SIF6:MN4 +(红色)制造的白色LED器件具有蓝色LED芯片的荧光粉表现出高发光效率(107.76 LM W-1)和宽色域(101%国家电视系统委员会标准(NTSC),Internationale de L'Eclairage(CIE)1931个颜色空间),展示了它的宽色域LCD背光潜在应用。

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