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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Cyclopolymerization. Part XXXII - radical polymerization of alpha-(2-phenylallyloxy)methylstyrene: synthesis of highly cyclized polymers with high glass transition temperatures and thermal stability
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Cyclopolymerization. Part XXXII - radical polymerization of alpha-(2-phenylallyloxy)methylstyrene: synthesis of highly cyclized polymers with high glass transition temperatures and thermal stability

机译:环聚合。第三十二部分-α-(2-苯基烯丙氧基)甲基苯乙烯的自由基聚合:具有高玻璃化转变温度和热稳定性的高度环化聚合物的合成

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摘要

A new 1,6-diene, alpha-(2-phenylallyloxy)methylstyrene (1), was synthesized and its radical cyclopolymerizations were studied, since 1 is expected to yield highly cyclized polymers with thermal stability and high glass transition temperatures. A low homopolymerization tendency of the monofunctional counterpart of 1 can be assumed reasonably, because it is a derivative of alpha-methylstyrene with a low ceiling temperature. This means that intermolecular propagation leading to pendant unsaturations is hard to occur during the polymerization of 1, which results in the formation of highly cyclized polymers. In fact, the degree of cyclization of poly(l) obtained at 180 degreesC attained the value 99%. Structural studies using a monomeric cyclic compound obtained by the telomerization of 1 permitted to assign main repeating cyclic units of poly(l) to a six-membered ring. The poly(l)s with a higher degree of cyclization were found to be stable up to 300 degreesC on thermogravimetric analyses and their glass transition temperatures were detected at temperatures over 250 degreesC. (0 2004 Elsevier Ltd. All rights reserved.
机译:合成了一种新的1,6-二烯,α-(2-苯基烯丙氧基)甲基苯乙烯(1),并对其自由基环聚合进行了研究,因为预计1会产生具有热稳定性和高玻璃化转变温度的高度环化的聚合物。可以合理地假设1的单官能对应物的低均聚趋势,因为它是具有较低上限温度的α-甲基苯乙烯的衍生物。这意味着在1的聚合过程中很难发生导致侧基不饱和的分子间传播,这导致形成高度环化的聚合物。实际上,在180℃下获得的poly(l)的环化度达到了99%的值。使用通过1的端粒化获得的单体环状化合物进行的结构研究允许将poly(l)的主要重复环状单元分配给六元环。在热重分析中发现具有较高环化度的聚(s)在高达300℃下是稳定的,并且在超过250℃的温度下检测到它们的玻璃化转变温度。 (0 2004 Elsevier Ltd.保留所有权利。

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