Ryckaert Jana, Leyre Sven, Hanselaer Peter, Meuret Youri
Opt Express. 2015 Nov 30;23(24):A1629-41. doi: 10.1364/OE.23.0A1629.
Luminescent materials are widely used in white LEDs to convert part of the blue LED light into light with a longer wavelength, resulting in white light when both colors are well mixed. One way to integrate the luminescent material in the LED package is to deposit a thin luminescent layer on a planar carrier or disperse luminescent particles in the carrier material and then position the resulting wavelength conversion plate above one or more LEDs. It is very important that these wavelength conversion plates have the right properties to ensure homogeneous white light with a high efficiency and desired correlated color temperature (CCT). Key properties are the absorption and emission spectrum and the scattering and absorption coefficients. These properties strongly influence the color of the resulting light, but also the efficiency and the angular uniformity. This work describes an extensive study of the effect of the scattering and absorption coefficients in terms of the desired CCT. A computationally efficient extended Adding-Doubling method is used for the simulation of the light distribution and conversion in the planar wavelength conversion element. Ultimately an optimal combination with a high efficiency and low angular color deviation is desired. Different systems are investigated and optimal coefficients are found. With these findings a more targeted approach can be used in the manufacturing of wavelength conversion plates for white LEDs. The addition of scatterers or non-scattering luminescent particles can be used to obtain optimal scattering properties of the wavelength conversion plate.
发光材料广泛应用于白光发光二极管(LED)中,用于将部分蓝光转换为波长更长的光,当两种颜色充分混合时可产生白光。将发光材料集成到LED封装中的一种方法是在平面载体上沉积一层薄的发光层,或将发光颗粒分散在载体材料中,然后将所得的波长转换板放置在一个或多个LED上方。这些波长转换板具有正确的特性以确保高效且具有所需相关色温(CCT)的均匀白光,这一点非常重要。关键特性包括吸收和发射光谱以及散射和吸收系数。这些特性不仅会强烈影响所得光的颜色,还会影响效率和角度均匀性。这项工作描述了关于散射和吸收系数对所需CCT影响的广泛研究。一种计算效率高的扩展倍增法用于模拟平面波长转换元件中的光分布和转换。最终,期望获得具有高效率和低角度颜色偏差的最佳组合。研究了不同的系统并找到了最佳系数。基于这些发现,在制造白光LED的波长转换板时可以采用更具针对性的方法。添加散射体或非散射发光颗粒可用于获得波长转换板的最佳散射特性。