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Elucidation of the wettability of graphene through a multi-length-scale investigation approach

机译:通过多尺度研究方法阐明石墨烯的润湿性

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Univocal conclusions around the wettability of graphene exposed to environmental conditions remain elusive despite the recent efforts of several research groups. The main discrepancy rests on the question of whether a graphene monolayer (GML) is transparent or not to water and more generally what the role is that the substrate plays in determining the degree of wetting of the GML. In this work, we investigate the water transparency of GML by means of a multi-length-scale approach. We complement traditional static contact angle measurements and environmental scanning electron microscopy experiments with atomic force microscopy based force spectroscopy to assess the role that intermolecular interactions play in determining the wetting of GML. To gain deeper insight into the wetting transparency issue, we perform experiments on inert metals, such as gold and platinum, covered or not covered by GML. The comparison of the results obtained for different systems (i.e. GML covered and uncovered inert metals), provides unambiguous evidence that supports the non-wetting transparency theory of GML. This work aims to assist the development of technologies based on graphene-water interaction, such as graphitic membranes for water separation processes.
机译:尽管几个研究小组最近做出了努力,但围绕石墨烯在环境条件下的润湿性的单方面结论仍然难以捉摸。主要差异在于以下问题:石墨烯单层(GML)对水是否透明,更一般而言,基材在确定GML的润湿程度方面起什么作用。在这项工作中,我们通过多长度尺度方法研究了GML的水透明度。我们将传统的静态接触角测量和环境扫描电子显微镜实验与基于原子力显微镜的力谱相结合,以评估分子间相互作用在确定GML润湿性中的作用。为了更深入地了解润湿透明度问题,我们对GML覆盖或未覆盖的惰性金属(例如金和铂)进行了实验。比较不同系统(即GML覆盖和未覆盖的惰性金属)获得的结果,可以提供明确的证据来支持GML的非润湿透明性理论。这项工作旨在协助开发基于石墨烯与水相互作用的技术,例如用于水分离工艺的石墨膜。

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