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Surface wettability and strong adhesion of medical polyurethane elastomer porous films by microphase separation

机译:通过微相分离的表面润湿性和医用聚氨酯弹性体多孔膜的强粘附性

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摘要

Inspired by geckos and parthenocissus tricuspidata, bionic high-adhesive materials have attracted great attention in the fields of environmental protection, biomedicine and intelligent control. The key is how to select appropriate materials and preparation methods to design materials with strong adhesion similar to the geckos. In this paper, the polyurethane elastomer (PUE) porous films with medical grade were successfully prepared by microphase separation method, and the microstructure, surface wettability and adhesion were investigated. It was found that the growth parameters (such as relative humidity, concentration and curing time) had important effects on the microstructure and morphology of PUE films. After modification with 1-dodecanethiol, the contact angle on the surface of the PUE film increased from the pre-modification value of 80° to 165°, but the corresponding rolling angle remained constant. The honeycomb PUE porous films have specially strong adhesion similar to geckos and parthenocissus tricuspidata, which will be expected to apply to the medical domain such as used as the external plaster to ensure adequate contact with skin and also prevent the evaporation of drugs and water.
机译:灵感来自Geckos和Parthenocissus Tricuspidata,仿生高粘合剂材料在环保,生物医学和智能控制领域引起了极大的关注。关键是如何选择适当的材料和准备方法来设计具有与壁虎相似的强粘连的材料。本文通过微相分离方法成功地制备了具有医疗等级的聚氨酯弹性体(PUE)多孔膜,并研究了微观结构,表面润湿性和粘附性。发现生长参数(例如相对湿度,浓度和固化时间)对扁平薄膜的微观结构和形态具有重要影响。在用1-十二烷硫醇进行修饰后,坪膜表面上的接触角从预改性值80°至165°增加,但相应的滚动角保持恒定。蜂窝扁孔膜具有与壁虎和普罗尼菌特异性特异性相似的特殊粘附,预计将适用于医疗领域,例如用作外部石膏,以确保与皮肤充分接触,并防止药物和水蒸发。

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