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Microgel Modified UV-Cured Methacrylic-Silica Hybrid: Synthesis and Characterization

机译:微凝胶改性的紫外线固化的甲基丙烯酸-二氧化硅杂化物:合成与表征

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摘要

An innovative photopolymerizable microgel modified UV-cured acrylic-silica hybrid formulation was developed and characterized for possible use as protective coating for different substrates. A deep investigation, aiming at providing a strong scientific basis for the production of organic-inorganic (O-I) hybrids exhibiting phase co-continuity, was firstly carried out. The O-I hybrid first proposed in this study was obtained from organic precursors with a high siloxane content, which are mixed with tetraethoxysilane (TEOS) in such a way to produce co-continuous silica nanodomains dispersed within the crosslinked organic phase, as a result of the sol-gel process. The first part of the research deals with the selection and optimization of suitable systems through appropriate chemical modifications, in order to ensure that curing reactions can be carried out at room temperature and in the presence of UV radiation. Firstly, the silica domains are formed, followed by crosslinking reactions of the acrylic groups in the oligomer via a free radical polymerization. The crosslinking reaction was controlled with the use of a suitable photoinitiator. Most of the experimental work was devoted to understanding the morphology of the hybrid system, both in uncured and cured states, and to assess its final thermal and optical properties, using different experiential techniques.
机译:开发了一种创新的可光聚合的微凝胶改性的紫外线固化丙烯酸-二氧化硅杂化配方,并对其进行了表征,以用作不同基材的保护涂层。首次进行了深入研究,旨在为生产具有相共连续性的有机-无机(O-I)杂化物提供强有力的科学依据。本研究中首先提出的OI杂化是从具有高硅氧烷含量的有机前体中获得的,这些前体与四乙氧基硅烷(TEOS)混合,从而产生分散在交联有机相中的共连续二氧化硅纳米域,这是由于溶胶-凝胶法。研究的第一部分是通过适当的化学修饰来选择和优化合适的系统,以确保固化反应可以在室温和紫外线辐射下进行。首先,形成二氧化硅结构域,然后通过自由基聚合使低聚物中的丙烯酸基团发生交联反应。使用合适的光引发剂控制交联反应。大多数实验工作都致力于了解混合系统在未固化和固化状态下的形态,并使用不同的实验技术评估其最终的热学和光学性质。

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