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Chemical and thermal stability of surface-modified porous polyethylene membranes

机译:表面改性的聚乙烯多孔膜的化学和热稳定性

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In this paper, we describe the surface modification of porous polyethylene by the adsorption of polyelectrolyte mutilayers on plasma-activated polyethylene surfaces. We use the migration rates of deionized water as an effective alternative to contact angle measurements in order to probe the interfacial energy of the modified surface. The newly acquired surface properties that result from the surface modification are monitored with respect to several key chemical and environmental variables. These variables were chosen so that they will reflect some of the common handling procedures in a laboratory or health care environments, such as exposure to solvents of different pH and polarities, and fluctuations of ambient temperature over an extended period, i.e., "shelf-life" duration. The stability of these surface properties of the modified membranes is a fundamental requirement for their potential use in a variety of applications involving lateral flow and binding media for bio-assays. In this paper, we show that a membrane modified by a polyelectrolyte monolayer is more stable than a membrane that has undergone plasma activation alone, while a membrane modified by a polyelectrolyte bilayer exhibits retention of the enhanced surface hydrophilic properties under various conditions and over a long period of time.
机译:在本文中,我们描述了通过在等离子体活化的聚乙烯表面上吸附聚电解质多层膜对多孔聚乙烯进行的表面改性。我们使用去离子水的迁移率作为接触角测量的有效替代方法,以探测改性表面的界面能。针对几个关键的化学和环境变量,对由表面改性产生的新获得的表面性能进行监控。选择这些变量是为了使它们能够反映实验室或医疗保健环境中的一些常见处理程序,例如暴露于不同pH和极性的溶剂中以及长时间内环境温度的波动,即“保质期”。 ”持续时间。改性膜的这些表面性质的稳定性是其在包括侧向流动和生物测定结合介质的各种应用中潜在使用的基本要求。在本文中,我们表明,由聚电解质单分子膜改性的膜比仅经过等离子体活化的膜更稳定,而由聚电解质双分子膜改性的膜在各种条件下和长期保持增强的表面亲水性。一段的时间。

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