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Surface energy and adhesion of perfluoropolyether nanofilms on carbon overcoat: The end group and backbone chain effect

机译:全氟聚醚纳米滤膜对碳外涂层的表面能和粘附性:末端组和骨干链效应

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In this paper, we have investigated the surface energy and adhesion of one functional PFPE (Zdol) and two series of nonfunctional PFPEs (Z and D) on carbon-overcoated disk surfaces. The effects of end group functionality, backbone chain flexibility, molecular weight, and film thickness were systematically examined. Our results indicated that nonfunctional PFPEs have weak attraction with carbon overcoat. However, due to backbone chain effect, Z has slightly stronger attraction than D. Based on the surface energy analyses and bonded thickness results, schematic bonding models were proposed, which indicate strong hydrogen bonding/ordered packing structure/low mobility for functional PFPE films and weak attraction/less-ordered packing structure/high mobility for nonfunctional PFPE films.
机译:在本文中,我们研究了一种功能性PFPE(Zdol)的表面能和粘附,两种无功能PFPES(Z和D)在碳涂层圆形圆盘表面上。系统地检查了端基功能,骨干链柔韧性,分子量和膜厚度的影响。我们的结果表明,无功能的PFPES具有碳外涂层的疲软吸引力。然而,由于骨干链效应,Z具有比D稍微较强的吸引力。基于表面能量分析和粘合厚度结果,提出了示意性粘合模型,表明功能性PFPE膜的强氢键/有序包装结构/低迁移率。弱吸引力/较少订购的包装结构/非功能性PFPE薄膜的高流动性。

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