综述热诱导相分离技术在制造微孔聚合物膜器件中的应用,以实现持续驱虫:结晶和形态研究

IF 3.9 3区 化学 Q2 POLYMER SCIENCE
António Benjamim Mapossa, Robert Kimutai Tewo, Suprakas Sinha Ray, Washington Mhike, Uttandaraman Sundararaj
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引用次数: 0

摘要

本文报告了热诱导相分离技术在制造微孔支架聚合物膜作为驱虫剂控释装置方面的最新进展。文章对基于聚合物膜的驱虫剂的结晶行为和形态研究等关键方面进行了报告和讨论。研究表明,通过聚合物/液体驱虫剂体系的旋光分解,可将此类驱虫剂捕集到微孔聚合物材料中。通常,溶解度在温度升高时会增强。将这种溶液快速冷却到 UCST 以下,可通过分解形成共连续相结构。然后,聚合物会形成一个开孔结构,并将斥水剂困在其中。成功形成这种含有驱蚊剂的开孔聚合物结构的方法,已通过 SEM 和 POM 技术得到证实。它显示了通过旋光分解制备的聚合物和液态驱蚊剂的结构,证明了热诱导旋光分解是将液态驱蚊剂捕获到微孔聚合物基质中的一种途径。此外,还讨论了聚合物类型、驱蚊剂性质、冷却条件和填料对 TIPS 膜的形态和性能的影响。最后,还讨论了利用 TIPS 技术开发基于微孔聚合物膜的驱蚊剂所面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review on thermally induced phase separation technology in the fabrication of microporous polymer membrane devices for sustained-repellent delivery: Crystallization and morphological studies

A review on thermally induced phase separation technology in the fabrication of microporous polymer membrane devices for sustained-repellent delivery: Crystallization and morphological studies

A review on thermally induced phase separation technology in the fabrication of microporous polymer membrane devices for sustained-repellent delivery: Crystallization and morphological studies

This article reports recent advances in thermally induced phase separation technology in fabricating microporous scaffold polymeric membranes as devices suitable for the controlled release of insect repellent. The key aspects, such as the crystallization behavior and morphological study of the polymeric membrane-based repellent, were reported and discussed. Studies demonstrated that trapping of such repellents into microporous polymeric materials can be achieved by spinodal decomposition of the polymer/liquid repellent system. Usually, solubility is enhanced at elevated temperatures. Rapid cooling of such solution below the UCST leads to the formation of cocontinuous phase structures by decomposition. The polymer then forms an open-cell structure with the repellent trapped inside. Approaches to forming such an open-cell polymer structure containing mosquito repellent were successfully performed and confirmed with the SEM and POM techniques. It showed the structure of a polymer and liquid repellent prepared by spinodal decomposition, providing proof that thermally induced spinodal decomposition is a route to trap liquid mosquito repellent into a microporous polymer matrix. Additionally, the effects of polymer type, repellent nature, cooling conditions, and fillers on the morphology and performance of TIPS membranes are also discussed. Finally, challenges in developing microporous polymeric membrane-based repellent using TIPS technology are addressed.

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来源期刊
Journal of Polymer Science
Journal of Polymer Science POLYMER SCIENCE-
CiteScore
6.30
自引率
5.90%
发文量
264
期刊介绍: Journal of Polymer Research provides a forum for the prompt publication of articles concerning the fundamental and applied research of polymers. Its great feature lies in the diversity of content which it encompasses, drawing together results from all aspects of polymer science and technology. As polymer research is rapidly growing around the globe, the aim of this journal is to establish itself as a significant information tool not only for the international polymer researchers in academia but also for those working in industry. The scope of the journal covers a wide range of the highly interdisciplinary field of polymer science and technology.
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