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Chemical control of superhydrophobicity of carbon nanotube surfaces: droplet pinning and electrowetting behavior

机译:superhydrophobicity碳的化学控制纳米管表面:滴把电润湿行为

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We report the remarkable transformation of a superhydrophobic surface of multiwalled carbon nanotubes after chemical manipulation (functionalization, especially by ozonolysis), which leads to a pinning action and eventually hydrophilic behavior, upon the application of an electric field. The effect of droplet pinning on a hydrophobic surface is an indication of the Wenzel formalism, where it is assumed that the liquid fills up the space between the protrusions on the surface. Also, the ozonized bucky surfaces show fascinating electrowetting behavior in the presence of an electrolyte, which follows a transition from a superhydrophobic, Cassie-Baxter state to a hydrophilic, Wenzel state as a function of the electric field, this has been modelled using a simple approach and the corresponding interracial capacitance has been determined.
机译:我们报告的显著转变超疏水表面微碳纳米管化学处理后(功能化,特别是臭氧分解),并最终导致将行动亲水行为,在应用程序的电场。的疏水表面文策尔形式主义,它是假定液体填满空间之间的突起表面上。展示迷人的电润湿行为遵循一个电解质的存在从超疏水,Cassie-Baxter亲水状态,文策尔作为一个状态电场的函数,这是使用一个简单的方法和模型对应不同种族之间的电容确定。

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