Bao Yan, Zhang Yuanxia, Ma Jianzhong
College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science and Technology, Xi'an, 710021, P. R. China.
Nanoscale. 2020 Aug 21;12(31):16443-16450. doi: 10.1039/d0nr02571b. Epub 2020 Jun 3.
Durable superhydrophobic coating is attractive due to its long-term superhydrophobicity, anti-fouling and self-cleaning properties. However, the fabrication of durable superhydrophobic coatings on a fragile surface, including leather and paper, is still a challenge due to its bad resistance to harsh environments such as high temperature, high pressure and strong acid or strong base. Herein, we developed a universal way to fabricate long-lasting superhydrophobic coating on leather via amphiphilic Janus particles, which have one of the semispheres functionalized with hydrophobic 1-dodecanethiol and the other semisphere functionalized with hydrophilic β-mercaptoethylamine. Polyurethane with isocyanate end groups was sprayed on the leather surface as an intermediate layer to strongly link Janus particles with leather via cross-linking. Moreover, amphiphilic Janus particles were fabricated from hollow SiO particles via a thiol-ene click reaction due to its low density. The superhydrophobic coating on leather possessed a high water contact angle of 162.2°. Furthermore, it still retained excellent hydrophobicity with a water contact angle of 154° after 140 cycles of abrasion using sandpaper. This study not only provides a novel method for the fabrication of amphiphilic hollow SiO Janus nanoparticles, but also resolves the difficulties in constructing long-lived superhydrophobic coatings on fragile surfaces by existing methods. Meanwhile, the present study also suggests a potential way to translocate functional Janus microcapsules, which may give some significant suggestions on the future nanoparticle design for drug delivery and energy storage.
耐久性超疏水涂层因其长期的超疏水性、防污和自清洁性能而备受关注。然而,在包括皮革和纸张在内的易碎表面上制备耐久性超疏水涂层仍然是一项挑战,因为其对高温、高压和强酸或强碱等恶劣环境的耐受性较差。在此,我们开发了一种通用方法,通过两亲性Janus粒子在皮革上制备持久的超疏水涂层,该粒子的一个半球用疏水性1-十二烷硫醇功能化,另一个半球用亲水性β-巯基乙胺功能化。将异氰酸酯端基的聚氨酯喷涂在皮革表面作为中间层,通过交联将Janus粒子与皮革牢固连接。此外,由于其低密度,通过硫醇-烯点击反应由中空SiO粒子制备两亲性Janus粒子。皮革上的超疏水涂层具有162.2°的高水接触角。此外,在使用砂纸进行140次磨损循环后,其仍保持154°的水接触角,具有优异的疏水性。本研究不仅为制备两亲性中空SiO Janus纳米粒子提供了一种新方法,还解决了现有方法在易碎表面构建长寿命超疏水涂层的难题。同时,本研究还提出了一种转移功能性Janus微胶囊的潜在方法,这可能为未来用于药物递送和能量存储的纳米粒子设计提供一些重要建议。