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首页> 外文期刊>Journal of Materials Science >Transformation of poly(dimethylsiloxane) into thin surface films of SiOx by UV/ozone treatment. Part II: segregation and modification of doped polymer blends
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Transformation of poly(dimethylsiloxane) into thin surface films of SiOx by UV/ozone treatment. Part II: segregation and modification of doped polymer blends

机译:通过紫外线/臭氧处理将聚二甲基硅氧烷转变为SiOx薄膜。第二部分:掺杂聚合物共混物的分离和改性

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UV/ozone treatment of organic polymers having silicone additives to produce oxidized layers was achieved by doping a host polymer or prepolymer with a silicone additive, poly(dimethylsiloxane) (PDMS). The concentration of PDMS in the host polymer was low, typically in the range of 0.1-2.0% by weight. Host polymers were polyethylene, polyimide, and polyurethane. After film formation, the presence of PDMS was detected on the surface using X-ray photoelectron spectroscopy (XPS), consistent with wetting angle measurements that revealed a hydrophobic surface. The doped blend was then subjected to exposure in a UV/ozone environment such that a thin, stable barrier of SiO (x) was formed at the surface of the film. Rate of film modification was monitored by XPS and measurement of advancing contact angle using deionized water. XPS measurements also showed some evidence of modified fragments of the host polymer near the surface. Significant segregation of PDMS and subsequent transformation to silicon oxides has been demonstrated to occur in the se doped systems. The stability of the modified glassy surface formed by UV/ozone treatment of a commercially available epoxy formulation containing a silicone additive was shown to be superior to that obtained by other treatment techniques, e.g., oxygen plasma modification.
机译:通过用硅氧烷添加剂聚(二甲基硅氧烷)(PDMS)掺杂主体聚合物或预聚物,可以对具有硅氧烷添加剂的有机聚合物进行紫外线/臭氧处理以产生氧化层。主体聚合物中PDMS的浓度低,通常在0.1-2.0重量%的范围内。主体聚合物是聚乙烯,聚酰亚胺和聚氨酯。成膜后,使用X射线光电子能谱(XPS)在表面检测到PDMS的存在,这与揭示疏水表面的润湿角测量结果一致。然后将掺杂的共混物在UV /臭氧环境中进行曝光,以便在薄膜表面形成薄而稳定的SiO(x)阻挡层。通过XPS监测膜改性的速率,并使用去离子水测量前进接触角。 XPS测量还显示了一些证据,表明表面附近的主体聚合物的片段已被修饰。已证明在掺杂的系统中会发生PDMS的明显偏析和随后向氧化硅的转变。通过对包含硅氧烷添加剂的市售环氧制剂进行UV /臭氧处理形成的改性玻璃状表面的稳定性显示出优于通过其他处理技术例如氧等离子体改性获得的稳定性。

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