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Super-Hydrophobic/Icephobic Coatings Based on Silica Nanoparticles Modified by Self-Assembled Monolayers

机译:自组装单分子膜改性二氧化硅纳米粒子的超疏水/疏油涂层

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A super-hydrophobic surface has been obtained from nanocomposite materials based on silica nanoparticles and self-assembled monolayers of 1 H ,1 H ,2 H ,2 H -perfluorooctyltriethoxysilane (POTS) using spin coating and chemical vapor deposition methods. Scanning electron microscope images reveal the porous structure of the silica nanoparticles, which can trap small-scale air pockets. An average water contact angle of 163° and bouncing off of incoming water droplets suggest that a super-hydrophobic surface has been obtained based on the silica nanoparticles and POTS coating. The monitored water droplet icing test results show that icing is significantly delayed by silica-based nano-coatings compared with bare substrates and commercial icephobic products. Ice adhesion test results show that the ice adhesion strength is reduced remarkably by silica-based nano-coatings. The bouncing phenomenon of water droplets, the icing delay performance and the lower ice adhesion strength suggest that the super-hydrophobic coatings based on a combination of silica and POTS also show icephobicity. An erosion test rig based on pressurized pneumatic water impinging impact was used to evaluate the durability of the super-hydrophobic/icephobic coatings. The results show that durable coatings have been obtained, although improvement will be needed in future work aiming for applications in aerospace.
机译:使用旋涂和化学气相沉积法从纳米复合材料(基于二氧化硅纳米颗粒和1 H,1 H,2 H,2 H-全氟辛基三乙氧基硅烷(POTS)的自组装单分子层)获得超疏水表面。扫描电子显微镜图像显示了二氧化硅纳米颗粒的多孔结构,可以捕获小规模的气穴。平均水接触角为163°,并从进入的水滴弹起,表明基于二氧化硅纳米粒子和POTS涂层已获得超疏水表面。监测的水滴结冰测试结果表明,与裸露的基材和市售的憎冰产品相比,基于二氧化硅的纳米涂层可显着延迟结冰。冰粘附测试结果表明,基于二氧化硅的纳米涂层显着降低了冰粘附强度。水滴的弹跳现象,结冰延迟性能和较低的冰粘附强度表明,基于二氧化硅和POTS的组合的超疏水涂层也具有疏冰性。使用基于加压气动冲击水的侵蚀试验设备来评估超疏水/疏酸涂层的耐久性。结果表明,尽管针对航空航天应用的未来工作仍需要改进,但已经获得了耐用涂层。

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