吸附水对二氧化硅填充环氧纳米复合材料介电性能和玻璃化转变温度的影响

C. Zou, M. Fu, J. Fothergill, S. Rowe
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引用次数: 30

摘要

本文报道了纳米sio2填充环氧树脂在不同相对湿度和温度下的介电光谱研究。在玻璃化转变温度(Tg)以上,类直流电不完全电荷输运(QDC或LFD)在低频介电谱中占主导地位。在未干燥的复合材料中发现了另一个中频弛豫过程。水也引起玻璃化转变温度的降低,这可以通过介电光谱和DSC来测量。理论和实验都表明,纳米复合材料的含水量比未填充的环氧树脂高,表明纳米结构时的自由体积更大。在我们的体系中,二氧化硅的亲水表面很可能导致水包围并导致环氧树脂与二氧化硅的分层。这是纳米复合材料中潜在的机械和介电弱点,可能导致老化现象。疏水表面基团可能会降低纳米复合材料对水的吸附。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of absorbed water on the dielectric properties and glass-transition temperature of silica-filled epoxy nanocomposites
Work on dielectric spectroscopy of epoxy resin filled with nano-SiO2 at different relative humidities and temperatures is reported. Above the glass-transition temperature (Tg), dc-like imperfect charge transport (QDC or LFD) dominates the low frequency dielectric spectrum. Another mid-frequency relaxation process was found in the non-dried composites. Water also induces glass-transition temperature decreases, which can be measured both by dielectric spectroscopy and DSC. Both theory and experiment demonstrated that a higher water content could exist in nanocomposites than unfilled epoxy suggesting a bigger free volume when nanostructured. In our system, the hydrophilic surface of silica is likely to cause water to surround and lead to delamination of the epoxy from SiO2. This is a potential mechanical and dielectric weakness in the nanocomposites, which may lead to an ageing phenomenon. Hydrophobic surface group may reduce the water adsorption in nanocomposites.
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