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首页> 外文期刊>Angewandte Chemie >Unique Curing Properties through Living Polymerization in Crosslinking Materials: Polyurethane Photopolymers from Vinyl Ether Building Blocks
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Unique Curing Properties through Living Polymerization in Crosslinking Materials: Polyurethane Photopolymers from Vinyl Ether Building Blocks

机译:通过活性聚合在交联材料中的独特固化性能:乙烯基醚结构单元的聚氨酯光聚合物

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摘要

Photopolymers with unique curing capabilities were produced by combining living cationic polymerization with network formation and restricted polymer motion. A vinyl ether diol was synthesized as a functional building block and reacted with isophorone diisocyanate to form a highly functionalized vinyl ether polyurethane as a model system with high crosslinking ability. When using a cationic photoinitiator, fast polymerization is observed upon short UV irradiation. Curing proceeds in the absence of light and under ambient conditions without oxygen inhibition. Cationic active sites become trapped dormant species upon network-induced vitrification and surprisingly remain living for several days. The polymerization can be reactivated by additional UV irradiation and/or raised temperature. The curing behavior was studied in detail by using UV and FT-NIR coupled rheology and photo-DSC to simultaneously study spectroscopic and mechanical information, as well as thermal effects.
机译:通过将活性阳离子聚合与网络形成和受限的聚合物运动相结合,生产出具有独特固化能力的光敏聚合物。合成乙烯基醚二醇作为功能性结构单元,并与异佛尔酮二异氰酸酯反应,形成高度官能化的乙烯基醚聚氨酯,作为具有高交联能力的模型系统。当使用阳离子光引发剂时,在短的紫外线照射下观察到快速聚合。固化在无光条件下和在没有氧气抑制的环境条件下进行。阳离子活性位点在网络诱导的玻璃化作用下变成了被困的休眠物种,并且令人惊讶地保持了几天的生命。可以通过额外的紫外线辐射和/或升高的温度使聚合反应重新活化。通过使用UV和FT-NIR耦合流变学和光DSC来详细研究固化行为,同时研究光谱和机械信息以及热效应。

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