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Chemical nature of superhydrophobic aluminum alloys surfaces produced via a one-step process using fluoroalkyl-silane in a base medium

机译:通过在基础介质中使用氟代烷基硅烷一步一步生产的超疏水铝合金表面的化学性质

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摘要

Various surface characterization techniques were used to study the modified surface chemistry of superhydrophobic aluminum alloy surfaces prepared by immersing the substrates in an aqueous solution containing sodium hydroxide and fluoroalkyl-silane (FAS-17) molecules. The creation of a rough micronanostructure on the treated surfaces was revealed by scanning electron microscopy (SEM). X-ray photoelectron spectroscopy (XPS) and infrared reflection absorption spectroscopy (IRRAS) confirmed the presence of low surface energy functional groups of fluorinated carbon on the superhydrophobic surfaces. IRRAS also revealed the presence of a large number of OH groups on the hydrophilic surfaces. A possible bonding mechanism of the FAS-17 molecules with the aluminum alloy surfaces has been suggested based on the IRRAS and XPS studies. The resulting surfaces demonstrated water contact angles as high as ~166\ub0 and contact angle hystereses as low as ~4.5\ub0. A correlation between the contact angle, rms roughnesses, and the chemical nature of the surface has been elucidated.
机译:各种表面表征技术用于研究超疏水铝合金表面的改性表面化学性能,该工艺是通过将基材浸入含有氢氧化钠和氟代烷基硅烷(FAS-17)分子的水溶液中而制备的。通过扫描电子显微镜(SEM)揭示了在经处理的表面上形成粗糙的纳米结构。 X射线光电子能谱(XPS)和红外反射吸收能谱(IRRAS)证实了超疏水表面上存在氟化碳的低表面能官能团。 IRRAS还揭示了在亲水表面上存在大量的OH基团。根据IRRAS和XPS研究,已提出FAS-17分子与铝合金表面可能的键合机理。产生的表面显示出水接触角高达〜166 \ ub0,接触角滞回低至〜4.5 \ ub0。接触角,均方根粗糙度和表面化学性质之间的关系已经阐明。

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