背光
卤化物
发光二极管
材料科学
色域
荧光粉
锰
光学
光致发光
光电子学
液晶显示器
色温
发光效率
量子效率
二极管
Crystal(编程语言)
发光
激发
绿灯
蓝光
化学
物理
纳米技术
冶金
程序设计语言
无机化学
图层(电子)
量子力学
计算机科学
作者
Jianan Duan,Bo Yang,Deyin Wang,Yuhua Wang
标识
DOI:10.1002/lpor.202501442
摘要
Abstract A bright green‐emitting Mn 2+ ‐based halide single crystal, [Et(Ph) 3 P] 2 MnBr 4 , has been successfully grown, exhibiting green emission that peaks at 523 nm and achieving a record external quantum efficiency of 82.1% under 450 nm excitation. This impressive efficiency is attributed to the long Mn 2+ –Mn 2+ distance resulting from the separation of large organic cations, along with minimal defects and boundaries within the single crystal. A white light emitting diode (LED) fabricated from this halide has achieved a high luminous efficiency of 121.3 lm W −1 and a color gamut coverage of 108.7% National Television System Committee (NTSC) standard. Additionally, liquid crystal display (LCD) utilizing a white LED strip made with synthesized manganese hybrids for backlighting produce images that are more vivid and colorful than those generated by commercial white LEDs based on Y 3 Al 5 O 12 :Ce 3+ phosphor. Furthermore, this halide exhibits significant piezochromism, shifting from green to red upon compression, with an ultrabroad tunability of 105 nm observed below 5.93 GPa. These findings underscore the promising potential of [Et(Ph) 3 P] 2 MnBr 4 hybrid halide for backlighting and visual pressure sensing applications.
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