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Optimisation of the properties of siloxane coatings as anti-biofouling coatings: Comparison of PACVD and hybrid PACVD-PVD coatings

机译:优化硅氧烷涂料作为防污涂料的性能:PACVD和混合PACVD-PVD涂料的比较

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摘要

Plasma-assisted chemical vapour deposition (PACVD) siloxane coatings from a mixture of hexamethyldisiloxane (HMDSO) and O_2, and hybrid coatings deposited by simultaneous sputtering of silicon and plasma polymerisation of HMDSO+O_2 were prepared on glass and steel substrates. The effect of the addition of sputtered silicon was investigated for coatings with different HMDSO/O_2 ratios. The microstructure and composition of coatings were affected by the coating parameters used. Silicon content was roughly the same for all coatings; carbon content decreased while oxygen content and surface energy increased with decreasing HMDSO/O_2 ratio in hybrid coatings. Hardness and modulus were higher for hybrid coatings and increased with decreasing HMDSO/O_2 ratio. Hybrid coatings showed much better scratch and wear resistance than PACVD coatings. All coatings showed good fouling-release performance with the freshwater bacterium Pseudomonas fluorescens.
机译:在玻璃和钢基底上制备了由六甲基二硅氧烷(HMDSO)和O_2的混合物形成的等离子体辅助化学气相沉积(PACVD)硅氧烷涂层,以及通过同时溅射硅和HMDSO + O_2进行等离子体聚合而沉积的混合涂层。对于具有不同HMDSO / O_2比的涂层,研究了添加溅射硅的效果。涂层的微观结构和组成受所用涂层参数的影响。所有涂料中的硅含量大致相同。随着HMDSO / O_2比值的降低,碳含量降低,而氧含量和表面能升高。杂化涂层的硬度和模量较高,并且随着HMDSO / O_2比的降低而增加。杂化涂层比PACVD涂层具有更好的耐刮擦性和耐磨性。所有涂层均显示淡水细菌荧光假单胞菌具有良好的污垢释放性能。

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