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Thermally Stable Transparent Sol-Gel Based Siloxane Hybrid Material with High Refractive Index for Light Emitting Diode (LED) Encapsulation

机译:具有高折射率的热稳定透明溶胶-凝胶基硅氧烷混合材料,用于发光二极管(LED)封装

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Nonhydrolytic sol—gel condensation for the synthesis of nanosized inorganic—organic hybrid resin and hydrosilylation reaction under a Pt catalyst for the fabrication of oligosiloxane-based hybrid material (phenyl hybrimer) were used in this research. This combination of two chemical reactions results in material with useful properties for light emitting diode (LED) encapsulation. Until now, no polymers and phenyl polysiloxane materials have been reported with a high refractive index (over 1.52) and high transparency accompanied by resistance to yellowing induced by thermal degradation above 150 °C aging in air. In this article, we focused on the fabrication of a transparent and thermally stable phenyl hybrimer with high refractive index for LED encapsulation through siloxane networking by a hydrosilylation reaction with cross-linker and Pt caltalyst. The phenyl hybrimer has a high refractive index about 1.56. In particular, it has good thermal stability against discoloration to yellow by aging even at 200 °C, which is a key factor for the long lifetime of a LED encapsulant.
机译:本研究使用非水解溶胶-凝胶缩合法合成纳米尺寸的无机-有机杂化树脂,并在Pt催化剂下进行氢化硅烷化反应,以制备低聚硅氧烷基杂化材料(苯基混合剂)。两种化学反应的这种结合导致材料具有用于发光二极管(LED)封装的有用特性。迄今为止,还没有聚合物和苯基聚硅氧烷材料具有高折射率(超过1.52)和高透明性,以及在150°C以上的空气中在空气中老化引起的热降解引起的耐泛黄性的报道。在本文中,我们专注于通过与交联剂和Pt催化剂进行的氢化硅烷化反应,通过硅氧烷网络通过硅氧烷网络封装,制造具有高折射率的透明且热稳定的苯基氢化物,用于LED封装。苯基杂化剂具有约1.56的高折射率。尤其是,它具有良好的热稳定性,即使在200°C下也不会因老化而变黄,这是LED密封剂长寿命的关键因素。

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