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Properties of Nano-Hybrid Sol-Gel Coating Films Synthesized with Colloidal Silica and Organoalkoxy Silanes

机译:胶体二氧化硅和有机烷氧基硅烷合成纳米杂化溶胶-凝胶涂膜的性能

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Three kinds of colloidal silica (CS)/silane sol were prepared. Sols are involved with the kinds of silane with different organic group. Methyltrimethoxysilane (MTMS) has the three methoxy groups and a methyl group. γ-Glycidoxypropyltrimethoxysilane (GTMS) has the three methoxy groups and a bulky epoxy group. GTMS was added to two sols with different amount. When sol reacted for 10 days, viscosity increased dramatically. Trasnmittance of sols reacted for 10 days decreased rapidly, too. It indicated the stability of sol degraded. Sol-gel coating films were formed on glass substrate using spin coating procedure with reaction time for 10 days. Coating films were flat and transparent without cracking. CS/MTMS coating films showed high contact angle. When large amount of GTMS was added, contact angle decreased due to its epoxy group. No thermal degradation of CS/MTMS coating film occurred up to 600 °C. CS/MTMS/GTMS coating film degraded at 400 °C for decomposition of epoxy group which has long organic chain which easily degraded by the thermal shock.
机译:制备了三种胶体二氧化硅(CS)/硅烷溶胶。溶胶与具有不同有机基团的硅烷种类有关。甲基三甲氧基硅烷(MTMS)具有三个甲氧基和一个甲基。 γ-乙二氧基丙基三甲氧基硅烷(GTMS)具有三个甲氧基和一个庞大的环氧基。将GTMS添加到两种不同量的溶胶中。溶胶反应10天后,粘度急剧增加。反应10天的溶胶的透射率也迅速降低。这表明溶胶降解的稳定性。使用旋涂方法在玻璃基板上形成溶胶-凝胶涂膜,反应时间为10天。涂膜平整透明,无裂纹。 CS / MTMS涂膜显示高接触角。当添加大量的GTMS时,由于其环氧基,接触角减小。在高达600°C的温度下,CS / MTMS涂膜不会发生热降解。 CS / MTMS / GTMS涂膜在400°C时降解,用于分解具有长有机链的环氧基,该环易因热冲击而降解。

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