首页> 外文会议>Conference on Silicones in Coatings III Mar 28-30, 2000 Barcelona, Spain >Understanding Interfaces in OrganoSilicon Containing Coatings: Organosilane Adhesion Promoters
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Understanding Interfaces in OrganoSilicon Containing Coatings: Organosilane Adhesion Promoters

机译:了解含有机硅涂层的界面:有机硅烷附着力促进剂

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In the late 1940's it was shown that organosilanes could provide exceptional coupling or adhesive properties between an inorganic and organic phase. Subsequently, a wide range of coupling agents were developed that predominantly have the generic formula (RO)_3SiX. As the range of applications has grown, so has the complexity of the adhesion promoters used. Despite the increase in complexity the fundamental mechanisms of operation remain the same. In many markets, traditional materials are being replaced by thermoplastics, and as a consequence many modern technologies demand the ability to successfully adhere one polymer system to another. This is often achieved with the use of organosilane adhesion promoters. This study uses X-ray photoelectron spectroscopy (XPS) to investigate adsorption of organosilanes from solution onto poly(methylmethacrylate) (PMMA) and poly(ethylene terephthalate) (PET) substrates. The low surface energy of the thermoplastic substrate means that only small amounts of organosilane are adsorbed. Corona discharge treatment of the thermoplastic surface significantly changes the organosilane adsorption behaviour. Angle resolved XPS analysis showed that an adsorbed amino functional organosilane layer was orientated at the air interface, and the presence of a protonated amine at the polymer-silane interface was also demonstrated.
机译:在1940年代后期,研究表明有机硅烷可以在无机相和有机相之间提供出色的偶联或粘合性能。随后,开发了主要具有通式(RO)_3SiX的多种偶联剂。随着应用范围的扩大,所使用的粘合促进剂的复杂性也随之增加。尽管复杂性增加了,但基本的操作机制仍保持不变。在许多市场中,传统材料已被热塑性塑料取代,因此,许多现代技术要求能够将一种聚合物系统成功粘合到另一种聚合物系统上。这通常可以通过使用有机硅烷粘合促进剂来实现。这项研究使用X射线光电子能谱(XPS)来研究溶液中有机硅烷在聚甲基丙烯酸甲酯(PMMA)和聚对苯二甲酸乙二酯(PET)基底上的吸附。热塑性基材的低表面能意味着仅少量有机硅烷被吸附。热塑性表面的电晕放电处理显着改变了有机硅烷的吸附行为。角分辨XPS分析表明,吸附的氨基官能的有机硅烷层在空气界面处取向,并且还证明了在聚合物-硅烷界面处存在质子化胺。

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