Chen Zhan
Department of Chemistry, 930 North University Avenue, University of Michigan, Ann Arbor, MI 48109, United States.
Prog Polym Sci. 2010 Nov 1;35(11):1376-1402. doi: 10.1016/j.progpolymsci.2010.07.003.
This paper reviews recent progress in the studies of buried polymer interfaces using sum frequency generation (SFG) vibrational spectroscopy. Both buried solid/liquid and solid/solid interfaces involving polymeric materials are discussed. SFG studies of polymer/water interfaces show that different polymers exhibit varied surface restructuring behavior in water, indicating the importance of probing polymer/water interfaces in situ. SFG has also been applied to the investigation of interfaces between polymers and other liquids. It has been found that molecular interactions at such polymer/liquid interfaces dictate interfacial polymer structures. The molecular structures of silane molecules, which are widely used as adhesion promoters, have been investigated using SFG at buried polymer/silane and polymer/polymer interfaces, providing molecular-level understanding of polymer adhesion promotion. The molecular structures of polymer/solid interfaces have been examined using SFG with several different experimental geometries. These results have provided molecular-level information about polymer friction, adhesion, interfacial chemical reactions, interfacial electronic properties, and the structure of layer-by-layer deposited polymers. Such research has demonstrated that SFG is a powerful tool to probe buried interfaces involving polymeric materials, which are difficult to study by conventional surface sensitive analytical techniques.
本文综述了利用和频振动光谱(SFG)对埋入式聚合物界面进行研究的最新进展。文中讨论了涉及聚合物材料的埋入式固/液和固/固界面。对聚合物/水界面的SFG研究表明,不同的聚合物在水中表现出不同的表面重构行为,这表明原位探测聚合物/水界面的重要性。SFG还被应用于研究聚合物与其他液体之间的界面。研究发现,此类聚合物/液体界面处的分子相互作用决定了界面聚合物的结构。在埋入式聚合物/硅烷和聚合物/聚合物界面上,利用SFG对广泛用作粘合促进剂的硅烷分子的分子结构进行了研究,从而在分子层面上理解了聚合物粘合促进作用。使用具有几种不同实验几何结构的SFG对聚合物/固体界面的分子结构进行了研究。这些结果提供了有关聚合物摩擦、粘附、界面化学反应、界面电子性质以及逐层沉积聚合物结构的分子层面信息。此类研究表明,SFG是探测涉及聚合物材料的埋入式界面的有力工具,而这些界面难以用传统的表面敏感分析技术进行研究。