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首页> 外文期刊>ACS applied materials & interfaces >A Fluorine-free Slippery Surface with Hot Water Repellency and Improved Stability against Boiling
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A Fluorine-free Slippery Surface with Hot Water Repellency and Improved Stability against Boiling

机译:一种无氟的光滑表面,具有热水排斥性和改善沸腾的稳定性

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摘要

Inspired by natural living things such as lotus leaves and pitcher plants, researchers have developed many excellent antifouling coatings. In particular, hot-water-repellent surfaces have received much attention in recent years because of their wide range of applications. However, coatings with stability against boiling in hot water have not been achieved yet. Long-chain perfluorinated materials, which are often used for liquid-repellent coatings owing to their low surface energy, hinder the potential application of antifouling coatings in food containers. Herein, we design a fluorine-free slippery surface that immobilizes a biocompatible lubricant layer on a phenyl-group-modified smooth solid surface through OH-pi interactions. The smooth base layer was fabricated by modification of phenyltriethoxysilane through a solgel method. The pi-electrons of the phenyl groups interact with the carboxyl group of the oleic acid used as a lubricant, which facilitates immobilization on the base layer. Water droplets slid off the surface in the temperature range from 20 to 80 degrees C at very low sliding angles (2 degrees). Furthermore, we increased the pi-electron density in the base layer to strengthen the OH-pi interactions, which improved long-term boiling stability under hot water. We believe that this surface will be applied in fields in which the practical use of antifouling coatings is desirable, such as food containers, drink cans, and glassware
机译:研究人员推动了莲花叶和投手植物等自然生物的启发,已经开发出许多优秀的防污涂料。特别是,由于它们的应用范围广,近年来,热水缓解表面受到了很多关注。然而,尚未实现具有稳定性的涂层沸腾的涂层尚未实现。由于其低表面能而常用于液体排斥涂层的长链全氟化材料,阻碍了防污涂层在食品容器中的潜在应用。在此,我们设计一种无氟的光滑表面,通过OH-PI相互作用将生物相容性润滑剂层固定在苯基 - 族改性的光滑固体表面上。通过通过溶胶方法改性苯基三乙氧基硅烷制造光滑的基层。苯基的PI-电子与用作润滑剂的油酸的羧基相互作用,这有利于固定在基础层上。在非常低的滑动角度(2度)下,水滴从20至80℃的温度范围内滑动。此外,我们增加了基层中的PI-电子密度以加强OH-PI相互作用,这改善了热水下的长期沸腾稳定性。我们认为,这种表面将应用于防污涂料的实际使用,例如食品容器,饮料罐和玻璃器皿

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