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用于更好粘附的聚合物化学结构相干原理

Chemical Structural Coherence Principle on Polymers for Better Adhesion.

作者信息

Krapivko Alena L, Ryabkov Yegor D, Drozdov Fedor V, Yashtulov Nikolay A, Zaitsev Nikolay K, Muzafarov Aziz M

机构信息

M. V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, Vernadskogo Prospect, 86, 119571 Moscow, Russia.

N.S. Enikolopov Institute of Synthetic Polymeric Materials, Russian Academy of Sciences, Profsoyuznaya St., 70, 117393 Moscow, Russia.

出版信息

Polymers (Basel). 2022 Jul 12;14(14):2829. doi: 10.3390/polym14142829.

Abstract

Composite materials are the most variative type of materials employed in almost every task imaginable. In the present study, a synthesis of a novel perfluoroalkyltriethoxysilane is reported to be used in creating composites with polyhexafluoropropylene-one of the most indifferent and adhesion-lacking polymers existing. The mechanism of adhesion of hexafluoropropylene is proved to be due to chemical structural coherence of perfluoroalkyltriethoxysilane to a link of polyhexafluoropropylene chain. The ability of perfluoroalkyltriethoxysilane to attach to surfaces was studied by FT-IR spectroscopy of modified glass microspheres. Although the perfluoroalkyltriethoxysilane surface modifier allowed partial adhesion of polyhexafluoropropylene, some detachment took place; therefore, the surface nanostructuring was used to increase its specific area by aluminum foil anodizing. An anodized aluminum surface was studied by scanning electron microscopy. The resulting composite consisting of anodized aluminum, perfluoroalkyl surface modifier, and polyhexafluoropropylene layer was proved to be stable, showed no signs of detachment, and is a promising material for usage in harsh environments.

摘要

复合材料是几乎在所有可以想象到的任务中使用的最具变化性的材料类型。在本研究中,据报道一种新型全氟烷基三乙氧基硅烷的合成用于与聚六氟丙烯(现存最惰性且缺乏附着力的聚合物之一)制备复合材料。六氟丙烯的附着机理被证明是由于全氟烷基三乙氧基硅烷与聚六氟丙烯链节的化学结构连贯性。通过对改性玻璃微球的傅里叶变换红外光谱研究了全氟烷基三乙氧基硅烷附着于表面的能力。尽管全氟烷基三乙氧基硅烷表面改性剂使聚六氟丙烯实现了部分附着,但仍发生了一些脱离;因此,通过铝箔阳极氧化进行表面纳米结构化以增加其比表面积。通过扫描电子显微镜对阳极氧化铝表面进行了研究。由阳极氧化铝、全氟烷基表面改性剂和聚六氟丙烯层组成的所得复合材料被证明是稳定的,没有脱离迹象,并且是一种有望用于恶劣环境的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db03/9325137/8e590eb39e78/polymers-14-02829-g001.jpg

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