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Wettability Modification of Nanomaterials by Low-Energy Electron Flux

机译:低能电子通量对纳米材料的润湿性改性

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摘要

Controllable modification of surface free energy and related properties (wettability, hygroscopicity, agglomeration, etc.) of powders allows both understanding of fine physical mechanism acting on nanoparticle surfaces and improvement of their key characteristics in a number of nanotechnology applications. In this work, we report on the method we developed for electron-induced surface energy and modification of basic, related properties of powders of quite different physical origins such as diamond and ZnO. The applied technique has afforded gradual tuning of the surface free energy, resulting in a wide range of wettability modulation. In ZnO nanomaterial, the wettability has been strongly modified, while for the diamond particles identical electron treatment leads to a weak variation of the same property. Detailed investigation into electron-modified wettability properties has been performed by the use of capillary rise method using a few probing liquids. Basic thermodynamic approaches have been applied to calculations of components of solid–liquid interaction energy. We show that defect-free, low-energy electron treatment technique strongly varies elementary interface interactions and may be used for the development of new technology in the field of nanomaterials.
机译:粉体的表面自由能和相关特性(可润湿性,吸湿性,团聚等)的可控改性,可以使人们了解作用于纳米颗粒表面的精细物理机理,并改善其在许多纳米技术应用中的关键特性。在这项工作中,我们报告了我们开发的方法,该方法用于开发电子感应的表面能以及修饰物理性质完全不同的粉末(如钻石和ZnO)的基本相关性能的方法。所应用的技术提供了表面自由能的逐步调节,从而导致了广泛的润湿性调节。在ZnO纳米材料中,润湿性得到了很大的改善,而对于金刚石颗粒,相同的电子处理会导致相同特性的微弱变化。已经通过使用毛细管探测法和少量探测液体对电子改性的润湿性进行了详细研究。基本的热力学方法已经应用于固液相互作用能的组成计算。我们表明,无缺陷,低能耗的电子处理技术会极大地改变基本界面相互作用,并可用于纳米材料领域的新技术开发。

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