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Carbon-Bridge Incorporation in Organosilicate Coatings Using Oxidative Atmospheric Plasma Deposition

机译:碳桥结合在有机硅酸盐涂层中的氧化大气等离子体沉积

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摘要

Carbon-bridges were successfully incorporated into the molecular structure of inorganic silicate films deposited onto polymer substrates using an oxidative atmospheric plasma deposition process. Key process parameters that include the precursor chemistry and delivery rate are discussed in the context of a deposition model. The resulting coating exhibited significantly improved adhesion and a 4-fold increase in moisture resistance as determined from the threshold for debonding in humid air compared to dense silica or commercial sol-gel polysiloxane coatings. Other important parameters for obtaining highly adhesive coating deposition on oxidation-sensitive polymer substrates using atmospheric plasma were also investigated to fully activate but not overoxidize the substrate. The resulting carbon molecular bridged adhesive coating showed enhanced moisture resistance, important for functional membrane applications.
机译:使用氧化性大气等离子体沉积工艺将碳桥成功地结合到沉积在聚合物基材上的无机硅酸盐薄膜的分子结构中。在沉积模型的背景下讨论了包括前驱物化学性质和传输速率在内的关键工艺参数。与致密二氧化硅或市售溶胶-凝胶聚硅氧烷涂料相比,由湿空气中的脱粘阈值确定,所得涂料显示出显着改善的粘合性和耐湿性提高4倍。还研究了使用大气等离子体在氧化敏感的聚合物基材上获得高粘性涂层沉积的其他重要参数,以完全活化而不会使基材过度氧化。所得的碳分子桥连的粘合剂涂层显示出增强的耐湿性,这对于功能膜的应用很重要。

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