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High-Performance and Simply-Synthesized Ladder-Like Structured Methacrylate Siloxane Hybrid Material for Flexible Hard Coating

机译:高性能和易于合成的梯状结构甲基丙烯酸甲酯硅氧烷杂化材料用于柔性硬质涂层

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摘要

A high performance ladder-like structured methacrylate siloxane hybrid material (LMSH) was fabricated via simple hydrolytic sol–gel reaction, followed by free-radical polymerization. A structurally ordered siloxane backbone, the ladder-like structure, which is an essential factor for high performance, could be achieved by a short period of sol–gel reaction in only 4 h. This results in superior optical (Transmittance > 90% at 550 nm), thermal (T5 wt % decomposition > 400 ), mechanical properties(elastic recovery = 0.86, hardness = 0.6 GPa) compared to the random- and even commercialized cage-structured silsesquioxane, which also has ordered structure. It was investigated that the fabricated ladder-like structured MSH showed the highest overall density of organic/inorganic co-networks that are originated from highly ordered siloxane network, along with high conversion rate of polymerizable methacrylate groups. Our findings suggest a potential of the ladder-like structured MSH as a powerful alternative for the methacrylate polysilsesquioxane, which can be applied to thermally stable and flexible optical coatings, even with an easier and simpler preparation process.
机译:通过简单的水解溶胶-凝胶反应,然后进行自由基聚合,可以制备出高性能的阶梯状结构化甲基丙烯酸酯硅氧烷杂化材料(LMSH)。短时间内溶胶-凝胶反应仅需4小时即可实现结构有序的硅氧烷骨架(梯形结构),这是实现高性能的重要因素。这样可产生出众的光学性能(在550 nm处透射率> 90%),热(T5 wt%分解> 400 ),机械性能(弹性回复= 0.86,硬度= 0.6 GPa)与随机甚至商业化的笼相比-结构的倍半硅氧烷,它也具有有序的结构。研究表明,所制备的梯状结构MSH具有最高的有机/无机共网络总密度,该密度源自高度有序的硅氧烷网络,以及可聚合的甲基丙烯酸酯基团的高转化率。我们的发现表明,阶梯状结构的MSH可以作为甲基丙烯酸聚倍半硅氧烷的有力替代品,即使制备工艺更简单,也可以应用于热稳定和柔性的光学涂层。

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