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Gas sorption and transport in poly(phenylene oxide) and comparisons with other glassy polymers

机译:聚苯醚中的气体吸附和传输以及与其他玻璃聚合物的比较

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AbstractThe sorption and transport of several gases in poly(phenylene oxide) were measured at 35°C, and the results have been analyzed in terms of the dual sorption/mobility models which have been successfully employed for this purpose for other glassy polymers. Both the extent of sorption and rate of permeation of gases are quite large for poly(phenylene oxide) compared to other glassy polymers with rigid chain backbones. It is shown that the high extent of sorption is owing to the high glass transition temperature of this polymer, but this is not a significant factor in its high permeability to gases. The latter stems from large diffusion coefficients. It is shown that the capacity of the Langmuir mode of sorption inherent to glassy polymers is related to the value of the glass transition temperature in a general way for a wide variety of polymers. Observations about the diffusion coefficients for numerous gas–polymer pairs are discuss
机译:摘要 在35°C下测量了聚苯醚中几种气体的吸附和传输,并结合双吸附/迁移率模型对结果进行了分析,该模型已成功用于其他玻璃聚合物。与其他具有刚性链主链的玻璃聚合物相比,聚苯醚的吸附程度和气体渗透速率都相当大。结果表明,高吸附程度是由于该聚合物的高玻璃化转变温度,但这并不是其对气体的高渗透性的重要因素。后者源于较大的扩散系数。结果表明,玻璃聚合物固有的Langmuir吸附模式的能力与玻璃化转变温度值有关,对于各种聚合物来说,这是一般方式。讨论了关于许多气体-聚合物对的扩散系数的观察结果

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