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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Realizing high-brightness and ultra-wide-color-gamut laser-driven backlighting by using laminated phosphor-in-glass (PiG) films
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Realizing high-brightness and ultra-wide-color-gamut laser-driven backlighting by using laminated phosphor-in-glass (PiG) films

机译:通过使用层压磷光体(猪)薄膜实现高亮度和超宽色域激光驱动的背光

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摘要

As a new generation advanced display or projection technology, laser displays or projectors have attracted great attention owing to their ultra-high brightness, energy saving nature, brilliant image quality and/or large sizes. However, for laser displays or projectors without using three primary laser diodes, the lack of appropriate blue-laser-driven color converters is a big limitation and challenge. In this work, we propose to develop laminated phosphor-in-glass (PiG) films as laser-driven color converters for wide-color-gamut and high-brightness laser displays. The beta-Sialon:Eu and CaAlSiN3-LiSi2N2-Si2N2O, Calson:Ce phosphors were chosen as the green and orange emitters, respectively, and were co-fired with glass frits on a sapphire substrate to form PiG films. No interfacial reactions between phosphors and glass were identified, and phosphor powders were uniformly distributed in the glass matrix. The phosphor content and the film thickness had an influence on the microstructure, luminance saturation and optical properties of the PiG films under laser light irradiation; both PiG films reached a maximum luminance saturation of 6.09 W mm(-2) when their microstructures were optimized. The lamination architecture of the PiG films had a great impact on the optical properties of the laser-driven white light, and the maximum ones were achieved as the green-emitting PiG film was positioned on the orange-emitting film adhered to the sapphire substrate. Under 4.82 W mm(-2) blue laser excitation, the laminated double-layer PiG films enabled the creation of white light with a wide color gamut of 107% NTSC, luminous efficacy of 74.44 lm W-1, luminous flux of 282.13 lm and color temperature of 7902 K. These results indicate that the laminated PiG films are promising color converters for use in high-power and wide-color-gamut laser displays or projectors.
机译:由于新一代高级显示器或投影技术,激光显示器或投影仪由于其超高亮度,节能性,亮相的图像质量和/或大尺寸而引起了极大的关注。然而,对于不使用三个主要激光二极管的激光显示器或投影仪,缺乏适当的蓝色激光驱动的颜色转换器是一个很大的限制和挑战。在这项工作中,我们建议将层压的荧光体(猪)薄膜开发为激光驱动的彩色转换器,用于宽色域和高亮度激光器显示器。 Beta-Sialon:Eu和Caalsin3-Lisi2N2-Si2N2O,CALSON:CE磷光体分别被选择为绿色和橙色发射器,并在蓝宝石底物上与玻璃料共用以形成猪膜。鉴定荧光体和玻璃之间的界面反应,磷光体粉末均匀地分布在玻璃基质中。磷光体含量和膜厚度对激光照射下的猪膜的微观结构,亮度饱和度和光学性质产生影响;当优化它们的微观结构时,两种猪膜达到6.09Wmm(-2)的最大亮度饱和度。猪膜的层叠结构对激光驱动的白光的光学性质产生了很大的影响,并且在粘附在粘附在蓝宝石衬底的橙色发光膜上时,实现最大值。在4.82 W mm(-2)蓝色激光励磁下,层压双层猪膜使白光具有宽大色域的宽度为107%,发光功效为74.44升W-1,发光通量为282.13 LM, 7902 K的色温。这些结果表明层压猪膜是有希望的彩色转换器,用于高功率和宽色域激光显示器或投影仪。

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