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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Tuning luminescence of Ba3Si6O12N2:Eu2+ phosphor for full-spectrum warm white LED lighting
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Tuning luminescence of Ba3Si6O12N2:Eu2+ phosphor for full-spectrum warm white LED lighting

机译:BA3SI6O12N2的调整发光:EU2 +荧光粉用于全光谱暖白色LED照明

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摘要

Developing cyan phosphors excited by near ultraviolet (n-UV) or blue LED chips is extremely significant for making up for the cyan cavity of the existing white light emitting diodes (wLEDs). In this research, a cyan emission was successfully achieved via the replacement of Si-N with Al-O in Ba2.85Si6O12N2:0.15Eu(2+) green phosphor. The emission peak could be shifted from 512 nm to 495 nm. The mechanism of spectral blue shift can be interpreted by the decrease of the crystal field splitting strength, which is induced by the square of the bond length and the decrease of centroid shift of 5d level, which is induced by the spectroscopic polarizability and 6th power of the bond length. The optimal cyan Ba2.85Si5.65Al0.35O12.35N1.65:0.15Eu(2+) phosphor possess a broad excitation and emission band at the same time, whose emission intensity is 36% higher than that of Ba2.85Si6O12N2:0.15Eu(2+). The CCT of the wLED with Ba2.85Si5.65Al0.35O12.35N1.65:0.15Eu(2+) phosphor realizes from 4407 K to 4038 K and the Ra values achieve from 85.8 to 90.8. The results indicate that Ba2.85Si6-yAlyO12+yN2-y:0.15Eu(2+) phosphor can serve as a cyan component for application in full-spectrum warm white lighting. (C) 2021 Elsevier B.V. All rights reserved.
机译:开发由近紫外(n-UV)或蓝色LED芯片激发的青色荧光粉对于弥补现有白光发光二极管(WLED)的青色腔极为重要。在本研究中,通过在Ba2中用Al-O取代Si-N,成功地实现了青色发射。85Si6O12N2:0.15Eu(2+)绿色荧光粉。发射峰可以从512nm移动到495nm。光谱蓝移的机理可以解释为键长的平方导致的晶体场分裂强度的降低,以及光谱极化率和键长的6次方导致的5d能级质心位移的降低。最佳青色Ba2。85Si5。65Al0。35O12。35N1。65:0.15Eu(2+)荧光粉同时具有较宽的激发和发射波段,其发射强度比Ba2高36%。85Si6O12N2:0.15Eu(2+)。世界的CCT与Ba2发生了冲突。85Si5。65Al0。35O12。35N1。65:0.15Eu(2+)荧光粉在4407K到4038K之间发光,Ra值在85.8到90.8之间。结果表明,Ba2。85Si6-yAlyO12+yN2-y:0.15Eu(2+)荧光粉可作为青色组分用于全光谱暖白光照明。(c)2021爱思唯尔B.V.保留所有权利。

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