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Gas transport in surface grafted polypropylene films with poly(acrylic acid) chains

机译:具有聚丙烯酸链的表面接枝聚丙烯薄膜中的气体传输

摘要

This work describes the grafting reaction of poly(acrylic acid) (PA) onto the surface of polypropylene (PP) films carried out with ultraviolet radiation, using benzophenone as photoinitiator and water as solvent. By increasing the reaction time, graft percentages of 3.5, 6.5, 12.9, 19.8, 29.4, and 36.0% were obtained. Micrographs of the modified films show that grafting exclusively occurs on the PP films surface. The values of the permeability coefficient of oxygen, nitrogen, carbon dioxide, carbon monoxide, argon, methane, ethane, ethylene, and propane across the grafted films undergo a sharp drop. The interpretation of the permeation results suggest that radicals created in the tertiary carbons of the grafted chains by effect of UV light or by chain transfer reactions may highly crosslink the PA grafted layer. A rigid layer involving both strong hydrogen bonding and chains crosslinking is formed at grafting percentages of 3.5% that strongly hinders gas permeation across that layer. Destruction of hydrogen bonding by partially replacing protons of acrylic acid residues by sodium/silver cations increases the permeability of the surface grafted films. Finally, the films permselectivity is hardly affected by the grafted layer.
机译:这项工作描述了聚二丙烯酸(PA)在二苯甲酮作为光引发剂和水作为溶剂的情况下通过紫外线辐射在聚丙烯(PP)膜表面上的接枝反应。通过增加反应时间,获得了3.5%,6.5%,12.9%,19.8%,29.4%和36.0%的接枝百分比。改性膜的显微照片表明,接枝仅发生在PP膜表面。穿过接枝膜的氧气,氮气,二氧化碳,一氧化碳,氩气,甲烷,乙烷,乙烯和丙烷的渗透系数值急剧下降。渗透结果的解释表明,通过紫外线或链转移反应在接枝链叔碳中产生的自由基可能会高度交联PA接枝层。在3.5%的接枝率下会形成既包含强氢键又包含链交联的刚性层,严重阻碍了气体在该层上的渗透。通过用钠/银阳离子部分取代丙烯酸残基的质子来破坏氢键,增加了表面接枝膜的渗透性。最后,膜的渗透选择性几乎不受接枝层的影响。

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