聚合物
化学反应
化学
马来酸酐
尼龙6
化学工程
化学分解
高分子化学
酰胺
反应机理
有机化学
分解
共聚物
催化作用
工程类
作者
Bolin Li,John S. Andre,Xiaoyun Chen,Brian W. Walther,Rajesh P. Paradkar,Chuang Feng,Christopher J. Tucker,Carol E. Mohler,Zhan Chen
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2020-09-25
卷期号:92 (20): 14145-14152
被引量:49
标识
DOI:10.1021/acs.analchem.0c03228
摘要
Chemical reactions are the most important phenomena in chemistry. However, chemical reactions at buried solid/solid interfaces are very difficult to study in situ. In this research, the chemical reaction between two solid polymer materials, a nylon film and a maleic anhydride (MAH) grafted poly(ethylene-octene) (MAHgEO) sample, was directly analyzed at the buried nylon/MAHgEO interface at the molecular level in real time and in situ, using surface and interface sensitive sum-frequency generation (SFG) vibrational spectroscopy. Disappearance of nylon signals indicated a chemical reaction between amine and hydrolyzed amide groups of nylon and MAH groups on the MAHgEO at the buried interface. The appearance of SFG signals from reaction products was also observed at the buried nylon/MAHgEO interface. The mechanism of the observed interfacial reaction was further analyzed. Temperature-dependent SFG experiments were performed to measure the activation energy of the interfacial reaction, enabling a comparison with that reported for the bulk materials. The interfacial chemical reaction between nylon and MAHgEO greatly improved the adhesion of these dissimilar materials. The detailed analysis of a chemical reaction between two polymers at the polymer/polymer buried interface underscores the utility of SFG as a powerful analytical tool to build understanding of buried interfaces and to accelerate the design of interfacial structures with desired properties.
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