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Review on UV-Induced Cationic Frontal Polymerization of Epoxy Monomers

机译:紫外线诱导环氧单体抗阳离子常压的回顾

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Ultraviolet (UV)-induced cationic frontal polymerization has emerged as a novel technique that allows rapid curing of various epoxy monomers upon UV irradiation within a few seconds. In the presence of a diaryliodonium salt photoinitiator together with a thermal radical initiator, the cationic ring opening polymerization of an epoxide monomer is auto-accelerated in the form of a self-propagating front upon UV irradiation. This hot propagating front generates the required enthalpy to sustain curing reaction throughout the resin formulation without further need for UV irradiation. This unique reaction pathway makes the cationic frontal polymerization a promising route towards the efficient curing of epoxy-based thermosetting resins and related composite structures. This review represents a comprehensive overview of the mechanism and progress of UV-induced cationic frontal polymerization of epoxy monomers that have been reported so far in literature. At the same time, this review covers important aspects on the frontal polymerization of various epoxide monomers involving the chemistry of the initiators, the effect of appropriate sensitizers, diluents and fillers.
机译:紫外线(UV)诱导的阳离子额相聚合作为一种新颖的技术,可以在几秒钟内以紫外线照射在紫外线照射时快速固化各种环氧单体。在与热自由​​基引发剂一起的二芳基碘鎓盐光引发剂中,在UV照射时以自我繁殖前方的形式自动加速环氧化物单体的阳离子开环。该热繁殖前面前产生所需的焓,以在整个树脂配方中维持固化反应,而无需进一步需要UV照射。这种独特的反应途径使阳离子正面聚合成为有效的环氧基热固性树脂和相关复合结构的有效固化的有希望的途径。该综述概述了紫外线诱导的环氧单体的机制和进展概述,这些环氧单体迄今为止迄今为止在文献中报道。同时,本综述涵盖了涉及引发剂化学物质的各种环氧化物单体的正面聚合的重要方面,适当敏化剂,稀释剂和填料的作用。

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