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An Effective Route to the Fabrication of Super-Hydrophobic Surfaces Combined by Micromolding and Photograft Polymerization Methods

机译:通过微旋光和自光移植聚合方法组合的超疏水表面的制备有效途径

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摘要

A super-hydrophobic surface on the polypropylene matrix was fabricated via micromolding and photograft polymerization. A micro-convex body structure was molded by etching templates. The water contact angle could be increased to 138°. The fluoro methacrylate monomers were further grafted to the surface through UV-induced photograft polymerization. The morphology characterization and the spectroanalysis indicated that the rough hierarchical structure (confirmed by scanning electron microscope) and the grafted fluoropolymers (measured by fourier transform infrared spectrum and X-ray energy dispersive spectrometer) made a critical difference. A water contact angle of 160° was arrived.
机译:聚丙烯基质上的超疏水性表面通过微胶体和自光移植聚合制备。通过蚀刻模板模制微凸体结构。水接触角可以增加到138°。通过UV诱导的光移植聚合进一步接枝氟代甲基丙烯酸酯单体。形态学表征和光谱分析表明,粗糙的层次结构(通过扫描电子显微镜确认)和接枝含氟聚合物(通过傅里叶变换红外光谱和X射线能量分散光谱仪测量)构成了临界差异。到达160°的水接触角。

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