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High Refractive Index and Transparent Nanocomposites as Encapsulant for High Brightness LED Packaging

机译:高折射率和透明纳米复合材料作为高亮度LED封装的密封剂

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摘要

A high refractive index (RI) and transparent encapsulant material is in great demand for light emitting diode (LED) packaging to lower the RI contrasts between a LED chip and an encapsulant, and therefore improve the light extraction efficiency. In this paper, we prepared TiO2/silicone nanocomposites and studied the effects of the crystalline phases of TiO2, and the TiO2 surface modifications on their optical properties. The rutile TiO2 was found to be more effective to increase the RI of the nanocomposite than the anatase phase TiO2. At a 5 wt.% loading of TiO2, the RI was as high as 1.62 at the wavelength of 589 nm, which represents a significant improvement from 1.54 for silicone resin. In addition, surface modification was carried out using vinyl-terminated silane to improve the dispersion of nanoparticles in a silicone matrix, leading to a high relative transmittance of 84%. We also demonstrated that the optical property degradation of the nanocomposites in this paper was negligible after the accelerated reliability test.
机译:为了降低LED芯片和密封剂之间的RI对比度并因此提高光提取效率,对发光二极管(LED)封装的高折射率(RI)和透明密封剂材料的需求很大。本文制备了TiO 2 /有机硅纳米复合材料,研究了TiO 2 的晶相的影响以及TiO 2 的表面改性光学特性发现金红石型TiO 2 比锐钛矿相TiO 2 更有效地提高纳米复合材料的RI。在TiO 2 的重量百分比为5%时,在589 nm的波长下RI高达1.62,这比有机硅树脂的1.54显着提高。此外,使用乙烯基封端的硅烷进行了表面改性,以改善纳米颗粒在硅酮基质中的分散性,从而获得了84%的高相对透射率。我们还证明,经加速可靠性测试后,本文中纳米复合材料的光学性能下降可忽略不计。

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