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Effect of a Surfactant in Microcapsule Synthesis on Self-Healing Behavior of Capsule Embedded Polymeric Films

机译:表面活性剂在微胶囊合成对胶囊包埋聚合物膜的自愈合行为的影响

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摘要

Recently, there has been increased interest in self-healing membranes containing functional microcapsules in relation to challenges involving water treatment membranes. In this study, a self-healing membrane has been prepared by incorporating microcapsules with a polyurethane (PU) shell and a diisocyanate core in a poly(ether sulfone) (PES) membrane. Depending on the characteristics of the microcapsule, to precisely quantify the self-healing behavior and performance of the produced microcapsule embedded membranes, it is important to understand the effect of a used surfactant on microcapsule synthesis. It is noteworthy that mixed surfactants have been employed to control and tailor the size and morphology of microcapsules during the synthetic process, and the surfactant system employed was one of the most dominant parameters for affecting the healing capability of microcapsule embedded membranes. Various techniques including microscopy (optical and electron), thermal analyses (DSC and TGA), and water flux measurements have been employed. This article provides essential and important information for future research into the subtle relation between microcapsule properties with varied synthetic parameters and the self-healing behavior of membrane.
机译:最近,对含有涉及水处理膜的挑战的含有功能微胶囊的自愈膜的兴趣增加。在该研究中,通过将微胶囊与聚氨酯(PU)壳和二异氰酸酯核在聚(醚砜)(PES)膜中加入微胶囊来制备自愈膜。取决于微胶囊的特性,精确地量化了产生的微胶囊嵌入膜的自愈行为和性能,重要的是要了解使用的表面活性剂对微胶囊合成的影响。值得注意的是,已经使用混合表面活性剂来控制和定制微胶囊在合成过程中的尺寸和形态,并且所用的表面活性剂体系是影响微胶囊嵌入膜的愈合能力最大的参数之一。已经采用了各种技术,包括显微镜(光学和电子),热分析(DSC和TGA)和水通量测量。本文提供了未来研究微胶囊性能与多种合成参数的微妙关系的基本和重要信息,以及膜的自愈合行为。

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