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Plasma polymerized thin films of maleic anhydride and 1,2-methylenedioxybenzene for improving adhesion to carbon surfaces

机译:等离子聚合的马来酸酐和1,2-亚甲二氧基苯薄膜,用于改善与碳表面的粘附性

摘要

Low power 2-phase AC plasma polymerization has been used to surface modify glassy carbon substrates that are used as an experimental model for carbon fibers in reinforced composites. In order to probe the role of carboxylic acid density on the interfacial adhesion strength a combination of different plasma powers and monomer compositions was used. Maleic anhydride (MAH) and 1,2-methylenedioxybenzene (MDOB) were plasma deposited separately and as mixtures to create layers with different surface compositions. In all cases the MAH was hydrolyzed to form carboxylic acid groups. Some carboxylic acid are present on the MDOB surface as a result of the fragmentation processes in the plasma. Chemical and physical changes were investigated as a function of plasma power at constant polymerization time. Surface chemistry analysis was performed with x-ray photoelectron spectroscopy and attenuated total veflectance Fourier transform infrared spectroscopy. Atomic force microscopy was used to measure the thickness of the plasma films and to monitor the surface roughness for the different polymerization conditions. Finally, preliminary results of fracture energy measurements of the plasma modified surfaces determined by a double cantilever method are presented.
机译:低功率两相AC等离子体聚合已用于表面改性玻璃碳基材,该基材被用作增强复合材料中碳纤维的实验模型。为了探究羧酸密度对界面粘合强度的作用,使用了不同等离子体功率和单体组成的组合。马来酸酐(MAH)和1,2-亚甲基二氧基苯(MDOB)分别进行等离子体沉积并作为混合物进行等离子体沉积,以形成具有不同表面组成的层。在所有情况下,MAH都被水解形成羧酸基团。由于血浆中的裂解过程,某些羧酸存在于MDOB表面上。在恒定的聚合时间下,研究化学和物理变化与等离子功率的关系。表面化学分析是通过X射线光电子能谱和衰减的全反射傅立叶变换红外光谱进行的。原子力显微镜用于测量等离子膜的厚度并监测不同聚合条件下的表面粗糙度。最后,介绍了通过双悬臂法确定的等离子体改性表面的断裂能测量结果。

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