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Thermal and optical properties of epoxy/zirconia hybrid materials synthesized via in situ polymerization

机译:原位聚合合成环氧/氧化锆杂化材料的热学和光学性质

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Epoxy/zirconia hybrid materials were synthesized from a bisphenol-A type epoxy resin, zirconium-tetra-n-propoxide and acetic acid via in situ polymerization. Acetic acid was used to control the hydrolysis and condensation reaction of the zirconium-tetra-n-propoxide. As a result, the zirconia produced by the in situ polymerization was uniformly dispersed into the epoxy matrix on a nano scale or less, and the hybrid materials exhibited an excellent optical transparency. With the increasing zirconia contents, the storage modulus in the rubbery region increased and the peak area of tanδ in the glass transition temperature region decreased. These results indicate that their heat resistance of the hybrid materials could be improved by hybridization with zirconia. Furthermore, the refractive indices of the hybrid materials were significantly improved with the increasing zirconia contents.
机译:环氧/氧化锆杂化材料是由双酚A型环氧树脂,四正丙酸锆和乙酸通过原位聚合合成的。乙酸用于控制四正丙酸锆的水解和缩合反应。结果,通过原位聚合产生的氧化锆以纳米或更小尺寸均匀地分散在环氧基质中,并且杂化材料表现出优异的光学透明性。随着氧化锆含量的增加,橡胶状区域的储能模量增加,玻璃化转变温度区域的tanδ峰面积减小。这些结果表明,通过与氧化锆的杂交可以改善它们的耐热性。此外,随着氧化锆含量的增加,杂化材料的折射率显着提高。

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