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Resistance of Superhydrophobic Surface-Functionalized TiO2 Nanotubes to Corrosion and Intense Cavitation

机译:超疏水性表面功能化TiO2纳米管对腐蚀和强空化的抵抗力

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摘要

The availability of robust superhydrophobic materials with the ability to withstand harsh environments are in high demand for many applications. In this study, we have presented a simple method to fabricate superhydrophobic materials from TiO2 nanotube arrays (TNTAs) and investigated the resilience of the materials when they are subjected to harsh conditions such as intense cavitation upon ultrasonication, corrosion in saline water, water-jet impact, and abrasion. The TNTAs were prepared by anodization of Ti foil in buffered aqueous electrolyte containing fluoride ions. The hydrophilic TNTAs were functionalized with octadecylphosphonic acid (ODPA) or 1H, 1H′, 2H, 2H′-perfluorodecyl phosphonic acid (PFDPA) to form a self-assembled monolayer on the TNTA surface to produce superhydrophobic ODPA@TNTA or PFDPA@TNTA surfaces. The superhydrophobic ODPA@TNTA and PFDPA@TNTA have contact angles of 156.0° ± 1.5° and 168° ± 1.5°, and contact angle hysteresis of 3.0° and 0.8°, respectively. The superhydrophobic ODPA@TNTA and PFDPA@TNTA were subjected to ultrasonication, corrosion in saline water, and water-jet impact and abrasion, and the resilience of the systems was characterized by electrochemical impedance spectroscopy (EIS), contact angle (CA) measurements, diffuse reflectance Fourier transform infrared spectroscopy (DRIFTS), and field-emission scanning electron microscopy (FESEM). The results presented here show that superhydrophobic ODPA@TNTA and PFDPA@TNTA are robust and resilient under the harsh conditions studied in this work, and indicate the potential of these materials to be deployed in practical applications.
机译:对于许多应用,对具有耐受恶劣环境的能力的坚固的超疏水材料的需求量很高。在这项研究中,我们提出了一种从TiO2纳米管阵列(TNTA)制备超疏水材料的简单方法,并研究了材料在恶劣条件下的回弹力,这些条件包括超声作用下的强烈空蚀,盐水腐蚀,水刀等。冲击和磨损。 TNTA通过在含氟离子的缓冲水性电解质中对铝箔进行阳极氧化来制备。用十八烷基膦酸(ODPA)或1H,1H',2H,2H'-全氟癸基膦酸(PFDPA)功能化亲水性TNTA,以在TNTA表面上形成自组装单层,以产生超疏水的ODPA @ TNTA或PFDPA @ TNTA表面。超疏水ODPA @ TNTA和PFDPA @ TNTA的接触角为156.0°±1.5°和168°±1.5°,接触角滞后分别为3.0°和0.8°。对超疏水的ODPA @ TNTA和PFDPA @ TNTA进行了超声处理,在盐水中腐蚀以及水射流的冲击和磨损,并通过电化学阻抗谱(EIS),接触角(CA)测量来表征系统的弹性,漫反射傅里叶变换红外光谱(DRIFTS)和场发射扫描电子显微镜(FESEM)。此处显示的结果表明,超疏水性ODPA @ TNTA和PFDPA @ TNTA在这项工作研究的苛刻条件下既坚固又富有弹性,并表明了这些材料在实际应用中的潜力。

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