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Chemically robust carbon nanotube – PTFE superhydrophobic thin filmswith enhanced ability of wear resistance
引用本文:Kewei Wang,Pan Xiong,Xiuping Xu,Kan Wang,YanLong Li,Yufeng Zheng. Chemically robust carbon nanotube – PTFE superhydrophobic thin filmswith enhanced ability of wear resistance[J]. 自然科学进展(英文版), 2017, 27(3): 396-399. DOI: 10.1016/j.pnsc.2017.04.004
作者姓名:Kewei Wang  Pan Xiong  Xiuping Xu  Kan Wang  YanLong Li  Yufeng Zheng
摘    要:A chemically robust superhydrophobic nanocomposite thin film with enhanced wear resistance is prepared from a composite comprising polytetrafluoroethylene(PTFE) and carbon nanotubes.The superhydrophobic thin films with hierarchical structure are fabricated by spraying an environmentally friendly aqueous dispersion containing carbon nanotubes and PTFE resin on silicon wafer.Thin films with a contact angle of 154.1°± 2° and a sliding angle less than 2° remain superhydrophobic after abrading over 500 times under a pressure of 50 g/cm~2.The thin film is also extremely stable even under much stress conditions.To further the understanding of the enhancement of wear resistance,we investigated the formation of microsized structure and their effects.The growth of microbumps is caused by attracting solution droplet to the hydrophilic islands on hydrophobic surface.

收稿时间:2016-10-24

Chemically robust carbon nanotube-PTFE superhydrophobic thin films with enhanced ability of wear resistance
Kewei Wang,Pan Xiong,Xiuping Xu,Kan Wang,YanLong Li and Yufeng Zheng. Chemically robust carbon nanotube-PTFE superhydrophobic thin films with enhanced ability of wear resistance[J]. Progress in Natural Science, 2017, 27(3): 396-399. DOI: 10.1016/j.pnsc.2017.04.004
Authors:Kewei Wang  Pan Xiong  Xiuping Xu  Kan Wang  YanLong Li  Yufeng Zheng
Affiliation:State Nuclear Electric Power Planning Design & Research Institute, 6 Dijin St., Haidian District, Beijing 100095, China,College of Engineering, Peking University, No.5 Yiheyuan Road, Haidian District, Beijing 100871, China,State Nuclear Electric Power Planning Design & Research Institute, 6 Dijin St., Haidian District, Beijing 100095, China,State Nuclear Electric Power Planning Design & Research Institute, 6 Dijin St., Haidian District, Beijing 100095, China,State Nuclear Electric Power Planning Design & Research Institute, 6 Dijin St., Haidian District, Beijing 100095, China and College of Engineering, Peking University, No.5 Yiheyuan Road, Haidian District, Beijing 100871, China
Abstract:A chemically robust superhydrophobic nanocomposite thin film with enhanced wear resistance is prepared froma composite comprising polytetrafluoroethylene (PTFE) and carbon nanotubes. The superhydrophobic thinfilms with hierarchical structure are fabricated by spraying an environmentally friendly aqueous dispersioncontaining carbon nanotubes and PTFE resin on silicon wafer. Thin films with a contact angle of 154.1° ± 2° anda sliding angle less than 2° remain superhydrophobic after abrading over 500 times under a pressure of 50 g/cm2. The thin film is also extremely stable even under much stress conditions. To further the understanding ofthe enhancement of wear resistance, we investigated the formation of microsized structure and their effects. Thegrowth of microbumps is caused by attracting solution droplet to the hydrophilic islands on hydrophobicsurface.
Keywords:SuperhydrophobicityThin filmCarbon nanotubeWear resistance
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