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首页> 外文期刊>Journal of Applied Polymer Science >Development of pendant drop mechanical analysis as a technique for determining the stress-relaxation and water-permeation properties of interfacially polymerized barrier layers
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Development of pendant drop mechanical analysis as a technique for determining the stress-relaxation and water-permeation properties of interfacially polymerized barrier layers

机译:悬垂液滴力学分析技术的发展,该技术可用于确定界面聚合阻挡层的应力松弛和透水性能

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Interfacial polymerization (IP) involves the formation of solid polymeric films at the interface between aqueous and immiscible organic solutions via an interfacial polycondensation reaction between complementary monomeric reactants present in the two solutions. IP films are very thin (<0.25 mum) and form effective barrier layers in interfacially polymerized thin-film composite membranes. Considerable difficulties are encountered in applying conventional characterization techniques to such unsupported IP thin films. This article describes the development of a novel technique, pendant drop mechanical analysis (PDMA), which can be used to study the mechanical and transport behavior of unsupported IP films. Experiments were conducted on films formed in a PDMA apparatus via the IP polymerization of m-phenylene diamine and trimesoyl chloride (TMC). Stress-relaxation data obtained via PDMA were fitted with the Williams-Watts equation, and the results indicated a statistically significant dependence of the model parameters on the TMC concentration. Permeation experiments also demonstrated a statistically significant dependence of the membrane constant on the TMC concentration. The results provide unique insights regarding the relationship between structure and performance in unsupported IP films and suggest that network formation is enhanced in a concentration range of 0.1-0.3 wt % TMC. Although refinements are required, PDMA appears to be a promising technique for identifying optimum IP reaction conditions and assessing corresponding mechanical and transport characteristics. (C) 2003 Wiley Periodicals, Inc. [References: 35]
机译:界面聚合(IP)涉及通过在两种溶液中存在的互补单体反应物之间的界面缩聚反应,在水性和不混溶的有机溶液之间的界面处形成固态聚合物膜。 IP膜非常薄(<0.25微米),并在界面聚合的薄膜复合膜中形成有效的阻挡层。在将常规表征技术应用于此类不受支持的IP薄膜时会遇到相当大的困难。本文介绍了悬垂液滴机械分析(PDMA)这一新技术的发展,该技术可用于研究不受支持的IP膜的机械性能和传输性能。对通过间苯二胺和均苯三甲酰氯(TMC)的IP聚合在PDMA设备中形成的膜进行了实验。通过PDMA获得的应力松弛数据与Williams-Watts方程拟合,结果表明模型参数对TMC浓度具有统计上的显着依赖性。渗透实验还证明了膜常数对TMC浓度的统计学显着依赖性。结果提供了有关无支撑IP膜中结构与性能之间关系的独特见解,并表明在0.1-0.3 wt%TMC的浓度范围内,网络形成得到增强。尽管需要进行改进,但PDMA似乎是用于确定最佳IP反应条件并评估相应的机械和传输特性的有前途的技术。 (C)2003 Wiley Periodicals,Inc. [参考:35]

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