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Reliability and diffusion-controlled through thickness oxidation of optical materials in LED-based products

机译:通过基于LED的产品中的光学材料的厚度氧化,实现可靠性和扩散控制

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In this study the temperature-induced oxidation reaction in bisphenol A polycarbonate (BPA-PC), leading to discoloration of the polymer used in solid state lighting applications, is studied. BPA-PC plates used as optical material in LED-based products suffer from yellowing and discoloration during service, resulting in a gradual deterioration of optical performance of the product. Discoloration reaction is greatly influenced by the temperature-induced oxidation of the polymer. In this study BPA-PC plates are aged at elevated temperature of 100-140 degrees C for a period up to 3000 h, aiming for accelerated oxidation of the plates. Diffusion of oxygen through the aged sample is studied up to 40 mu m. A significant oxygen uptake is observed up to 20 mu m. Activation energy of oxygen diffusion is measured to be 025 eV, which is close to activation energy of degradation reaction, reported in our previous works. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了双酚A聚碳酸酯(BPA-PC)中的温度诱导的氧化反应,该反应导致固态照明应用中使用的聚合物变色。在基于LED的产品中用作光学材料的BPA-PC板在使用过程中会发黄和变色,从而导致产品的光学性能逐渐下降。变色反应很大程度上受温度引起的聚合物氧化的影响。在这项研究中,BPA-PC板在100-140摄氏度的高温下进行了长达3000小时的老化,旨在加速板的氧化。研究了氧气在老化样品中的扩散,最大可达40微米。观察到高达20微米的氧气吸收量。氧扩散的活化能测得为025 eV,接近我们先前工作中报道的降解反应的活化能。 (C)2017 Elsevier Ltd.保留所有权利。

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