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疏水性聚合物基质中离子盐的纳米颗粒和凝胶化稳定功能复合材料。

Nanoparticle and gelation stabilized functional composites of an ionic salt in a hydrophobic polymer matrix.

作者信息

Kanyas Selin, Aydın Derya, Kizilel Riza, Demirel A Levent, Kizilel Seda

机构信息

Material Science and Engineering, Koc University, Sariyer, Istanbul, Turkey.

Department of Chemical and Biological Engineering, Koc University, Sariyer, Istanbul, Turkey.

出版信息

PLoS One. 2014 Feb 6;9(2):e88125. doi: 10.1371/journal.pone.0088125. eCollection 2014.

Abstract

Polymer composites consisted of small hydrophilic pockets homogeneously dispersed in a hydrophobic polymer matrix are important in many applications where controlled release of the functional agent from the hydrophilic phase is needed. As an example, a release of biomolecules or drugs from therapeutic formulations or release of salt in anti-icing application can be mentioned. Here, we report a method for preparation of such a composite material consisted of small KCOOH salt pockets distributed in the styrene-butadiene-styrene (SBS) polymer matrix and demonstrate its effectiveness in anti-icing coatings. The mixtures of the aqueous KCOOH and SBS-cyclohexane solutions were firstly stabilized by adding silica nanoparticles to the emulsions and, even more, by gelation of the aqueous phase by agarose. The emulsions were observed in optical microscope to check its stability in time and characterized by rheological measurements. The dry composite materials were obtained via casting the emulsions onto the glass substrates and evaporations of the organic solvent. Composite polymer films were characterized by water contact angle (WCA) measurements. The release of KCOOH salt into water and the freezing delay experiments of water droplets on dry composite films demonstrated their anti-icing properties. It has been concluded that hydrophobic and thermoplastic SBS polymer allows incorporation of the hydrophilic pockets/phases through our technique that opens the possibility for controlled delivering of anti-icing agents from the composite.

摘要

由均匀分散在疏水性聚合物基体中的小亲水性微区组成的聚合物复合材料在许多需要从亲水性相中控制释放功能剂的应用中很重要。例如,可以提及生物分子或药物从治疗制剂中的释放或防冰应用中盐的释放。在此,我们报道了一种制备由分布在苯乙烯-丁二烯-苯乙烯(SBS)聚合物基体中的小KCOOH盐微区组成的复合材料的方法,并证明了其在防冰涂层中的有效性。首先通过向乳液中添加二氧化硅纳米颗粒,甚至通过琼脂糖使水相凝胶化,来稳定KCOOH水溶液和SBS-环己烷溶液的混合物。在光学显微镜下观察乳液以检查其随时间的稳定性,并通过流变学测量进行表征。通过将乳液浇铸到玻璃基板上并蒸发有机溶剂来获得干燥的复合材料。通过水接触角(WCA)测量对复合聚合物膜进行表征。KCOOH盐向水中的释放以及干复合膜上水滴的结冰延迟实验证明了它们的防冰性能。得出的结论是,疏水性热塑性SBS聚合物允许通过我们的技术引入亲水性微区/相,这为从复合材料中控制释放防冰剂开辟了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1444/3916421/e2afb41a7232/pone.0088125.g001.jpg

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