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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis and permeability properties of crosslinkable elastomeric poly(vinyl allyl dimethylsilane)s
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Synthesis and permeability properties of crosslinkable elastomeric poly(vinyl allyl dimethylsilane)s

机译:可交联弹性体聚(乙烯基烯丙基二甲基硅烷)的合成和渗透性能

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This article presents the results of a systematic synthesis study of elastomeric crosslinkable polysilicon olefins, the related thermal crosslinking kinetics, and the main permeability parameters recorded for inorganic gases (He, N-2, O-2, and CO2) and C-1-C-7, hydrocarbons. Poly(vinyl allyl dimethylsilane) (PVADMS; glass-transition temperature < 273 degrees K) was obtained by the anionic polymerization of bifunctional vinyl allyl dimethylsilane monomer. The polymers were amorphous, high molecular compounds with mixed carbo-heterochain structures containing double bonds capable of intermolecular crosslinking under a thermal treatment. Thus, thermally crosslinked polymers exhibited a high resistance toward exposure to organic vapors, unlike noncrosslinked PVADMS. IR spectroscopy was used to investigate the polymer structural changes induced by the thermal treatment. An original technique based on a differential method was used to measure gas permeability during thermal crosslinking. PVADMS possessed higher permeability for C-1-C-7, hydrocarbons than for inorganic gases (excluding CO2), even after crosslinking. Permeability coefficients ranging from 140 to 1780 Barrer for He and CH4 were found before crosslinking; the thermal crosslinking induced a nonlinear permeability decrease that could be correlated with the disappearance of the double bonds in the polymer structures, that is, cis-CH=CH-, trans-CH=CH-, and CH2=CH- in the side-chain position. According to the found properties, PVADMS could be used as a prospective material for the preparation of highly permeable selective membranes suitable for lower hydrocarbon and volatile organic compound recovery from various chemical and petrochemical process streams. (c) 2005 Wiley Periodicals, Inc.
机译:本文介绍了弹性体可交联多晶硅烯烃的系统合成研究结果,相关的热交联动力学以及记录的无机气体(He,N-2,O-2和CO2)和C-1-的主要渗透性参数C-7,碳氢化合物。聚(乙烯基烯丙基二甲基硅烷)(PVADMS;玻璃化转变温度<273度K)是通过双官能乙烯基烯丙基二甲基硅烷单体的阴离子聚合获得的。该聚合物是具有混合碳-杂链结构的无定形高分子化合物,该结构包含能够在热处理下进行分子间交联的双键。因此,与未交联的PVADMS不同,热交联的聚合物表现出对暴露于有机蒸气的高抵抗力。红外光谱用于研究热处理引起的聚合物结构变化。基于微分法的原始技术用于测量热交联过程中的气体渗透率。即使交联后,PVADMS对C-1-C-7烃的渗透性也比对无机气体(不包括CO2)高。在交联之前,发现He和CH4的渗透系数为140-1780 Barrer。热交联导致非线性渗透性降低,这可能与聚合物结构中双键的消失有关,即在侧链中的顺式-CH = CH-,反式-CH = CH-和CH2 = CH-链位置。根据发现的特性,PVADMS可用作制备高渗透性选择性膜的前瞻性材料,该膜适用于从各种化学和石化工艺流中回收较低的烃类和挥发性有机化合物。 (c)2005年Wiley Periodicals,Inc.

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