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Imparting super hydro/oleophobic properties to cotton fabric by means of molecular and nanoparticles vapor deposition methods

机译:通过分子和纳米颗粒气相沉积方法赋予棉织物超强的疏水/疏油性能

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摘要

Super hydro/oleophobic cotton fabrics were prepared using nanoparticle vapor deposition and molecular vapor deposition techniques. The surface was roughened by trimethylaluminum/water nanoparticles followed by functionalization with (tridecafluoro-l,l,2,2-tetrahydrooctyl)trichlorosilane. This process imparted unique hydro/oleophobic properties (contact angle >160°). In contrast to wet chemistry processes, the chemicals used and the thickness of the coatings produced by this method could be controlled precisely, which allowed for the minimization of waste generation while preserving the original properties of the fabric. Dynamic contact angles were measured and the fabrics that were coated using this technique showed low-contact-angle hysteresis properties. Scanning electron microscopy and universal attenuated total reflectance Fourier transform infrared spectroscopy confirmed the formation of a nanostructure-roughened surface. Drop dynamics such as the force of droplet movement, work of adhesion, and surface free energy were also calculated.
机译:使用纳米粒子气相沉积和分子气相沉积技术制备了超疏水/疏油棉织物。通过三甲基铝/水纳米颗粒使表面粗糙,然后用(三氟氟-1,1,2,2-四氢辛基)三氯硅烷官能化。该过程赋予了独特的亲水/疏油性能(接触角> 160°)。与湿法化学工艺相反,可以精确控制使用的化学药品和通过此方法生产的涂层的厚度,从而在保持织物原始性能的同时,将废物的产生降到最低。测量了动态接触角,并且使用该技术涂覆的织物显示出低接触角滞后性能。扫描电子显微镜和全衰减全反射傅立叶变换红外光谱证实形成了纳米结构粗糙的表面。还计算了液滴动力学,如液滴运动的力,粘附功和表面自由能。

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