首页> 外文期刊>Macromolecules >Sorption and transport in poly(2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole-co-tetrafluoroethyl ene) containing nanoscale fumed silica
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Sorption and transport in poly(2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole-co-tetrafluoroethyl ene) containing nanoscale fumed silica

机译:在含有纳米级气相法二氧化硅的聚(2,2-双(三氟甲基)-4,5-二氟-1,3-二恶唑-共-四氟乙烯)中的吸附和迁移

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摘要

The addition of nanoscale, nonporous fumed silica [FS] particles to size-selective poly(2,2-bis(trifluoromethyl)-4,5-difluoro-1,3-dioxole-co-tetrafluoroethyl ene) [AF2400] systematically increases penetrant permeability coefficients, similar to behavior previously observed in vapor-selective polyacetylenes, but contrary to results in traditional filled polymer systems. Permeability coefficients of large penetrants increase more than those of small molecules in filled AF2400, thereby decreasing the size selectivity of this polymer. AF2400 is readily plasticized by n-butane, whereas AF2400 containing 40 wt % FS exhibits antiplasticization behavior, suggesting that filler addition alters AF2400 to allow n-butane molecules to be accommodated in the polymer without significant swelling and subsequent plasticization of the matrix. Both filled and unfilled AF2400 have essentially the same gas solubility coefficients, so all of the increase in penetrant permeability in filled AF2400 is a result of increased diffusion coefficients. There is reasonable agreement between diffusion coefficients obtained from transient sorption and steady-state data, both of which increase regularly with increasing FS content. Positron annihilation lifetime spectroscopy reveals that FS addition increases the size of free volume elements in AF2400. Thermal analysis of filled AF2400 shows that FS has no detectable effect on the polymer's glass transition temperature, indicating that FS has little impact on long-range chain mobility. [References: 36]
机译:向尺寸选择性的聚(2,2-双(三氟甲基)-4,5-二氟-1,3-二氧杂环戊烯-四氟乙烯共聚物)[AF2400]添加纳米级无孔气相二氧化硅[FS]颗粒可系统地增加渗透剂渗透系数,类似于先前在蒸汽选择性聚乙炔中观察到的行为,但与传统填充聚合物体系中的结果相反。在填充的AF2400中,大渗透剂的渗透系数比小分子的渗透系数增加更多,从而降低了该聚合物的尺寸选择性。 AF2400容易被正丁烷塑化,而包含40 wt%FS的AF2400表现出抗塑化行为,表明填料的添加改变了AF2400,使正丁烷分子能够容纳在聚合物中,而不会发生明显的溶胀和基质的增塑。填充的AF2400和未填充的AF2400具有基本相同的气体溶解度系数,因此填充的AF2400渗透渗透率的所有增加都是扩散系数增加的结果。从瞬态吸附和稳态数据获得的扩散系数之间存在合理的一致性,两者随FS含量的增加而有规律地增加。正电子an没寿命光谱显示,FS的添加增加了AF2400中自由体积元素的大小。填充的AF2400的热分析表明,FS对聚合物的玻璃化转变温度没有可检测的影响,表明FS对远程链迁移率的影响很小。 [参考:36]

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