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Light extraction efficiency enhancement for fluorescent SiC based white light-emitting diodes

机译:提高荧光siC基白光发光二极管的光提取效率

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摘要

Fluorescent SiC based white light-emitting diodes(LEDs) light source, as an innovative energy-efficient light source, would even have longer lifetime, better light quality and eliminated blue-tone effect, compared to the current phosphor based white LED light source. In this paper, the yellow fluorescent Boron-Nitrogen co-doped 6H SiC is optimized in terms of source material, growth condition, dopant concentration, and carrier lifetime by using photoluminescence, pump-probe spectroscopy etc. The internal quantum efficiency is measured and the methods to increase the efficiency have been explored. At a device level, the focus is on improving the light extraction efficiency due to the rather high refractive index of SiC by nanostructuring the surface of SiC. Both periodic nanostructures made by e-beam lithography and nanosphere lithography and random nanostructures made by self-assembled Au nanosphere mask and a thin layer of Al film have been investigated and all of them showed much enhanced extraction efficiency. All these good results pave the way to a very promising fluorescent SiC based white LED light source
机译:与目前的基于磷光体的白光LED光源相比,作为一种创新的节能光源,基于荧光SiC的白光发光二极管(LED)光源甚至具有更长的寿命,更好的光质量并消除了蓝调效应。本文通过光致发光,泵浦探针光谱等方法对黄色荧光硼氮共掺杂6H SiC的源材料,生长条件,掺杂剂浓度和载流子寿命进行了优化。测量了内部量子效率并计算了已经探索了提高效率的方法。在器件级别,重点是通过对SiC的表面进行纳米结构化来提高SiC的较高折射率,从而提高光提取效率。研究了通过电子束光刻和纳米球光刻制备的周期性纳米结构以及通过自组装金纳米球掩模和铝膜薄层制备的随机纳米结构,它们均显示出大大提高的提取效率。所有这些良好的结果为非常有前途的基于SiC的荧光白光LED光源铺平了道路

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