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Organically modified clays as rheology modifiers and dispersing agents for epoxy packing of white LED

机译:有机改性的粘土,作为流变改性剂和分散剂,用于白色LED的环氧树脂包装

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We develop a new class of polyetheramine-modified organoclays that enable the homogenous dispersion of inorganic phosphorescent phosphor powder, yttrium aluminum garnet Y3Al5O12 (YAG), in epoxy, which can then be used for packing of light-emitting diode (LED) devices. The organoclays are prepared from the ionic exchange reaction of sodium montmorillonite (Na+-MMT) with poly(oxypropylene) (POP) diamines of sufficiently high molecular weight, which are found to be effective for homogenizing YAG in the two-component epoxy system involving an anhydride curing agent and an aliphatic epoxy resin. By adding the POP-diamine-based organoclays, the viscosity of the anhydride/epoxy resins is greatly enhanced and the resin shows a non-Newtonian shear-thinning behavior. Because of the high viscosity that retards the molecular motion, the micrometer-scaled YAG particles can remain dispersed in the resins for a fairly long time without precipitation during the curing process. We investigate the rheological properties of the organoclays as the thickening agent and applied the organoclays to fabricate YAG particle-dispersed epoxy for packing of blue light LED that mixes the yellow light of the well-dispersed YAG particles to form uniform white illumination. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们开发了新型的聚醚胺改性有机粘土,可将无机磷光荧光粉,钇铝石榴石Y3Al5O12(YAG)在环氧树脂中均匀分散,然后可用于包装发光二极管(LED)器件。有机粘土是由蒙脱土钠(Na + -MMT)与分子量足够高的聚(氧化丙烯)(POP)二胺进行离子交换反应制得的,发现该二聚体可有效地均化包含两组分的环氧体系的YAG。酸酐固化剂和脂族环氧树脂。通过添加基于POP-二胺的有机粘土,酸酐/环氧树脂的粘度大大提高,并且该树脂表现出非牛顿的剪切稀化行为。由于阻碍分子运动的高粘度,微米级的YAG颗粒可以在相当长的时间内保持分散在树脂中,而在固化过程中不会沉淀。我们研究了有机粘土作为增稠剂的流变性能,并应用有机粘土制备了YAG颗粒分散的环氧树脂,用于包装蓝光LED,该LED混合了分散良好的YAG颗粒的黄光以形成均匀的白色照明。 (C)2016 Elsevier Ltd.保留所有权利。

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