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Fabrication of a Conjugated Fluoropolymer Film Using One-Step iCVD Process and its Mechanical Durability

机译:使用一步iCVD工艺制备共轭含氟聚合物薄膜及其机械耐久性

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Most superhydrophobic surface fabrication techniques involve precise manufacturing process. We suggest initiated chemical vapor deposition (iCVD) as a novel CVD method to fabricate sufficiently durable superhydrophobic coating layers. The proposed method proceeds with the coating process at mild temperature (40 °C) with no need of pretreatment of the substrate surface; the pressure and temperature are optimized as process parameters. To obtain a durable superhydrophobic film, two polymeric layers are conjugated in a sequential deposition process. Specifically, 1,3,5,7-tetravinyl-1,3,5,7-tetramethylcyclotetrasiloxane (V4D4) monomer is introduced to form an organosilicon layer (pV4D4) followed by fluoropolymer formation by introducing 1H, 1H, 2H, 2H-Perfluorodecyl methacrylate (PFDMA). There is a high probability of covalent bond formation at the interface between the two layers. Accordingly, the mechanical durability of the conjugated fluoropolymer film (pV4D4-PFDMA) is reinforced because of cross-linking. The superhydrophobic coating on soft substrates, such as tissue paper and cotton fabric, was successfully demonstrated, and its durability was assessed against the mechanical stress such as tensile loading and abrasion. The results from both tests confirm the improvement of mechanical durability of the obtained film.
机译:大多数超疏水表面制造技术涉及精确的制造过程。我们建议启动化学气相沉积(iCVD)作为一种新颖的CVD方法来制造足够耐用的超疏水涂层。所提出的方法在温和的温度下(40°C)进行涂覆过程,而无需对基材表面进行预处理。优化压力和温度作为工艺参数。为了获得耐用的超疏水性膜,在顺序沉积过程中将两个聚合物层共轭。具体而言,引入1,3,5,7-四乙烯基-1,3,5,7-四甲基环四硅氧烷(V4D4)单体以形成有机硅层(pV4D4),然后通过引入1H,1H,2H,2H-全氟癸基形成含氟聚合物甲基丙烯酸酯(PFDMA)。在两层之间的界面上形成共价键的可能性很高。因此,由于交联,增强了共轭含氟聚合物膜(pV4D4-PFDMA)的机械耐久性。成功证明了在柔软基材(如薄纸和棉织物)上的超疏水涂层,并针对机械应力(如拉伸载荷和磨损)评估了其耐久性。来自两个测试的结果证实了所获得的膜的机械耐久性的改善。

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