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首页> 外文期刊>European Polymer Journal >Semi-interpenetrating polymer networks by cationic photopolymerization: Fluorinated vinyl ether chains in a hydrogenated vinyl ether network
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Semi-interpenetrating polymer networks by cationic photopolymerization: Fluorinated vinyl ether chains in a hydrogenated vinyl ether network

机译:通过阳离子光聚合作用的半互穿聚合物网络:氢化乙烯基醚网络中的氟化乙烯基醚链

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摘要

Semi-interpenetrating polymer networks (semi-IPNs) were obtained by the cationic photoinduced polymerization of a hydrogenated difunctional vinyl ether (DVE3) and a fluorinated monofunctional vinyl ether (FVE). By analyzing the kinetics of polymerization and the thermal properties of the crosslinked networks, it was demonstrated that the molecular architecture of the photopolymers could be tuned by varying the amount of the fluorinated additive. When the weight content of FVE exceeded 15 wt.%, the monofunctional fluorinated monomer homopolymerized forming linear chains that were dispersed in the hydrogenated matrix composed by the DVE3 crosslinked network, thus generating a semi-IPN structure. Both bulk and surface properties of the resulting photopolymers were influenced by the addition of the fluorinated product. Fluorinated semi-IPNs were biphasic, displayed good thermal resistance both in air and under nitrogen (T-10 > 200 degrees C, T-50 > 380 degrees C) and showed a surface energy as low as 26 mN m(-1). (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过氢化双官能乙烯基醚(DVE3)和氟化单官能乙烯基醚(FVE)的阳离子光诱导聚合获得半互穿聚合物网络(semi-IPN)。通过分析聚合动力学和交联网络的热性能,证明了可以通过改变氟化添加剂的量来调节光敏聚合物的分子结构。当FVE的重量含量超过15重量%时,单官能氟化单体均聚形成线性链,所述线性链分散在由DVE3交联网络组成的氢化基质中,从而产生半IPN结构。所得光聚合物的体积和表面性质都受氟化产物的添加的影响。氟化半IPN是双相的,在空气中和氮气下均表现出良好的耐热性(T-10> 200摄氏度,T-50> 380摄氏度),表面能低至26 mN m(-1)。 (C)2016 Elsevier Ltd.保留所有权利。

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