Zabiliūtė-Karaliūnė Akvilė, Aglinskaitė Justina, Vitta Prancis Kus
Institute of Photonics and Nanotechnology, Faculty of Physics, Vilnius University, Saulėtekio al. 3, 10257, Vilnius, Lithuania.
Sci Rep. 2021 Mar 24;11(1):6755. doi: 10.1038/s41598-021-86249-4.
Phosphor converters for solid state lighting applications experience a strong thermal stress under high-excitation power densities. The recent interest in laser diode based lighting has made this issue even more severe. This research presents an effective approach to reduce the thermal quenching effect and damage of laser-excited phosphor-silicone converters using thermally conductive hexagonal boron nitride (hBN) particles. Herein, the samples are analyzed by employing phosphor thermometry based on the photoluminescence decay time, and thermo-imaging techniques. The study shows that hBN particle incorporation increases the thermal conductivity of a phosphor-silicone mixture up to 5 times. It turns out, that the addition of hBN to the Eu[Formula: see text] doped chalcogenide-silicone converters can increase the top-limit excitation power density from 60 to 180 W cm[Formula: see text], thus reaching a 2.5 times higher output. Moreover, it is shown that the presence of hBN in Ce[Formula: see text] activated garnet phosphor converters, may increase the output power by up to 1.8 times and that such converters can withstand 218 W cm[Formula: see text] excitation. Besides, hBN particles are also found to enhance the stability of the converters chromaticity and luminous efficacy of radiation. This means that the addition of hBN particles into silicone-based phosphor converter media is applicable in a wide range of different areas, in particular, the ones requiring a high optical power output density.
用于固态照明应用的磷光体转换器在高激发功率密度下会经历强烈的热应力。最近对基于激光二极管的照明的关注使这个问题更加严重。本研究提出了一种有效的方法,使用导热六方氮化硼(hBN)颗粒来降低激光激发的磷光体-硅酮转换器的热猝灭效应和损伤。在此,通过基于光致发光衰减时间的磷光体测温法和热成像技术对样品进行分析。研究表明,掺入hBN颗粒可使磷光体-硅酮混合物的热导率提高多达5倍。结果表明,向Eu[化学式:见原文]掺杂的硫族化物-硅酮转换器中添加hBN可将最高激发功率密度从60提高到180 W/cm²,从而使输出提高2.5倍。此外,研究表明,Ce[化学式:见原文]激活的石榴石磷光体转换器中hBN的存在可使输出功率提高多达1.8倍,并且这种转换器可承受218 W/cm²的激发。此外,还发现hBN颗粒可增强转换器的色度稳定性和辐射发光效率。这意味着将hBN颗粒添加到基于硅酮的磷光体转换器介质中适用于广泛的不同领域,特别是那些需要高光功率输出密度的领域。