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Atmospheric Plasma Deposited Dense Silica Coatings on Plastics

机译:塑料上的大气等离子体沉积致密二氧化硅涂层

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摘要

We explore the application of a high-temperature precursor delivery system for depositing high boiling point organosilicate precursors on plastics using atmospheric plasma. Dense silica coatings were deposited on stretched poly(methyl methacrylate), polycarbonate and silicon substrates from the high boiling temperature precursor, 1, 2-bis(triethoxysilyl)-ethane, and from two widely used low boiling temperature precursors, tetraethoxysilane and tetramethyicyclotetrasiloxane. The coating deposition rate, molecular network structure, density, Young's modulus and adhesion to plastics exhibited a strong dependence on the precursor delivery temperature and rate, and the functionality and number of silicon atoms in the precursor molecules. The Young's modulus of the coatings ranged from 6 to 34 GPa, depending strongly on the coating density. The adhesion of the coatings to plastics was affected by both the chemical structure of the precursor and the extent of exposure of the plastic substrate to the plasma during the initial stage of deposition. The optimum combinations of Young's modulus and adhesion were achieved with the high boiling point precursor which produced coatings with high Young's modulus and good adhesion compared to commercial polysiloxane hard coatings on plastics.
机译:我们探索了高温前驱物输送系统在使用大气压等离子体在塑料上沉积高沸点有机硅酸盐前驱物的应用。用高沸点的前体1,2,2-双(三乙氧基甲硅烷基)-乙烷,以及两种广泛使用的低沸点的前体,四乙氧基硅烷和四甲基环四硅氧烷,在拉伸的聚甲基丙烯酸甲酯,聚碳酸酯和硅基材上沉积致密的二氧化硅涂层。涂层的沉积速率,分子网络结构,密度,杨氏模量和对塑料的粘附性均强烈依赖于前驱体的输送温度和速率,以及前驱体分子中硅原子的功能和数量。涂层的杨氏模量范围为6至34 GPa,这很大程度上取决于涂层的密度。涂层对塑料的粘附性受前体的化学结构和沉积初期塑料基材暴露于等离子体的程度的影响。与塑料上的市售聚硅氧烷硬质涂料相比,高沸点前体可实现杨氏模量和附着力的最佳组合,该高沸点前体可生产出高杨氏模量和良好附着力的涂料。

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