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Simulation of experimentally observed dilation phenomena during integral gas sorption in glassy polymers

机译:在玻璃态聚合物中进行整体气体吸附过程中实验观察到的膨胀现象的模拟

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A molecular modeling investigation of dilation effects induced by sorbed gas molecules in two glassy polymers is presented. As experimental reference, integral sorption Of CO2 and CH4 was measured for polysulfone (PSU) and a polyimide (6FDA-TrMPD, PI4) at 308 K and a pressure of 10 bar. Simultaneously, the gas induced swelling effect was measured with a dilatometer based on a capacitive distance sensor recorded. The experimental evidence of the (on the observed time scale and concentration levels) elastic nature of the gas induced dilation is supported by the dilation and contraction behavior observed in molecular dynamics (MD) simulations of respective detailed atomistic packing models. These models were constructed in accordance with gas concentration levels obtained from the experimental sorption results. Quantitative deviations between simulated and measured dilations are discussed as a consequence of an anelastic response of the polymer matrix which is too fast to be resolved in the experiments whose kinetics is dominated by diffusional processes. In the simulation, the initial insertion of penetrant molecules into equilibrated packing models "circumvents" the slow diffusional process of the experiment and allows a reasonable representation of the dilation process as well as a closer investigation. Our simulation approach reveals a different behavior for PSU and PI4 on the corresponding time scale. Most likely, the different chain mobility of the two polymers is responsible for the respective response to the inserted amount of gas molecules which is discussed in terms of the different chain mobilities of the two polymers. (C) 2007 Wiley Periodicals, Inc.
机译:分子模型研究了由两种玻璃态聚合物中吸附的气体分子引起的膨胀效应。作为实验参考,在308 K和10 bar的压力下测量了聚砜(PSU)和聚酰亚胺(6FDA-TrMPD,PI4)对CO2和CH4的整体吸附。同时,基于所记录的电容距离传感器,用膨胀计测量气体引起的溶胀效果。在各个详细的原子堆积模型的分子动力学(MD)模拟中观察到的膨胀和收缩行为,证明了气体诱导的膨胀(在观察到的时间尺度和浓度水平上)的弹性性质的实验证据。根据从实验吸附结果获得的气体浓度水平构建这些模型。由于聚合物基体的无弹性响应,讨论了模拟和实测膨胀之间的定量偏差,该响应太快而无法在动力学受扩散过程支配的实验中解决。在模拟中,将渗透剂分子最初插入平衡的填充模型中可以“规避”实验的缓慢扩散过程,并可以合理地表示扩张过程以及进行更深入的研究。我们的仿真方法揭示了在相应的时间范围内PSU和PI4的不同行为。最有可能的是,两种聚合物的不同链迁移率分别导致了对气体分子插入量的响应,这是根据两种聚合物的不同链迁移率进行讨论的。 (C)2007 Wiley期刊公司

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