首页> 外文会议>EMAP 2012;International conference on Electronic Materials and Packaging >Different Morphologies of Nano-ZnO Affection on Properties of Transparent Epoxy Resin Encapsulants
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Different Morphologies of Nano-ZnO Affection on Properties of Transparent Epoxy Resin Encapsulants

机译:纳米ZnO与透明环氧树脂包封剂性能的不同形态

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With the development of light emitting diodes (LEDs), it puts forward higher performance requirements on encapsulants, mainly epoxy resins. So far, people have made a great deal of efforts on improving the thermal conductivity, resistance of thermal and ultra-visible light (UV) aging, visible light (Vis) transparency and refractive index. It is an effective method of introducing inorganic fillers, like zinc oxide (ZnO) and titanium oxide (TiO_2),into epoxy matrix to prepare nanocomposites. In this paper, two morphologies of nano-ZnO, particles and nanorods, were prepared. Nano-ZnO particles and rods were respectively dispersed into butanone with ultrasonic technique before added into the epoxy solution. The epoxy resins were made into ultra-thin film via spin-coating method. The results show that the nano-ZnO particles/epoxy nanocomposite ultra-thin films kept high visible transparency and high UV shielding at the condition of lwt% addition, but no improvement on thermal conductivity. Contrarily nano-ZnO rods/epoxy nanocomposite ultra-thin films did not present so well in optical properties, but better on thermal conductivity. So we mixed the two kinds of nano-ZnO to improve the thermal conductivity at the presupposition of not harming the shielding of UV and keeping the transparency of Vis of the epoxy resins.
机译:随着发光二极管(LED)的发展,它提出了对密封剂的更高的性能要求,主要是环氧树脂。到目前为止,人们对提高导热系数,热和超可见光(UV)衰老,可见光(VI)透明度和折射率的热传导性,阻力进行了大量努力。它是将无机填料(如氧化锌(ZnO)和氧化钛(TiO_2)引入环氧基质中的有效方法,以制备纳米复合材料。在本文中,制备了纳米ZnO,颗粒和纳米棒的两种形态。在加入环氧溶液之前,分别用超声波技术分别分散进入丁酮中的纳米ZnO颗粒和棒。通过旋涂法将环氧树脂制成超薄膜。结果表明,纳米ZnO颗粒/环氧纳米复合材料超薄薄膜在LWT%的加法条件下保持着高可见的透明度和高紫外线屏蔽,但没有改善导热率。反向纳米ZnO棒/环氧纳米复合材料超薄薄膜在光学性质中不存在如此良好,但在导热性上更好。因此,我们混合了两种纳米ZnO,以提高PREUPPOPTION的导热率,不会损害紫外线屏蔽并保持环氧树脂的透明度。

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