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Achieving highly hydrophobic or hydrophilic HfNx-Ag films surfaces by controlling the existing forms of Ag

机译:通过控制现有的Ag形式实现高度疏水或亲水的HfNx-Ag薄膜表面

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Increasing demands for robust hydrophobic or hydrophilic surfaces in harsh conditions such as erosion, abrasion and high temperature, have stimulated the development of intrinsically hydrophobic or hydrophilic ceramics (or metals). Despite tremendous efforts, realizing robust highly hydrophobic or hydrophilic ceramics surfaces using a simple method remains a great challenge. In this letter, we report that HfNx-Ag films with two different existing forms of Ag: (1) Solute Ag and (II) Precipitate Ag, were deposited using co-sputtering system by setting deposition temperature at room temperature (RT) and 400 degrees C, respectively, further achieving highly hydrophobic (water contact angle (WCA) similar to 120 degrees) or hydrophilic (WCA similar to 55 degrees) surfaces by controlling the content of solute Ag or precipitate Ag. Solute Ag provides the hydrophobic Ag2O groups with coordinative saturation though surface self-oxidation, which inhibits hydrogen bonding with interfacial water molecules, whereas hydrophilic precipitate Ag acts as Lewis acid, which interacts strongly with water. (C) 2017 Elsevier B.V. All rights reserved.
机译:在苛刻的条件下,例如腐蚀,磨损和高温下,对坚固的疏水或亲水表面的需求不断增加,刺激了本征疏水或亲水陶瓷(或金属)的发展。尽管付出了巨大的努力,但是使用简单的方法来实现坚固的高疏水性或亲水性陶瓷表面仍然是一个巨大的挑战。在这封信中,我们报道了使用共溅射系统通过将沉积温度设置为室温(RT)和400来沉积具有两种不同现有形式的Ag的HfNx-Ag膜:(1)溶质Ag和(II)沉淀Ag。通过控制溶质Ag或沉淀Ag的含量,可进一步获得高度疏水性(类似于120度的水接触角(WCA))或亲水性(类似于55度的WCA)表面。溶质Ag通过表面自氧化作用为疏水的Ag2O基团提供了配位饱和,从而抑制了与界面水分子的氢键结合,而亲水性沉淀Ag起到了路易斯酸的作用,与水发生了强烈的相互作用。 (C)2017 Elsevier B.V.保留所有权利。

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