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Interaction of the Helium, Hydrogen, Air, Argon, and Nitrogen Bubbles with Graphite Surface in Water

机译:氦气,氢气,空气,氩气和氮气气泡与石墨表面的相互作用

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The interaction of the confined gas with solid Surface immersed in water is a common theme of many important fields such as self-cleaning surface, gas storage, and sensing. For that reason, we investigated the gas-graphite interaction in the water medium. The graphite surface was prepared by mechanical exfoliation of highly oriented pyrolytic graphite (HOPG). The surface chemistry and morphology were studied by X-ray photoelectron spectroscopy, profilometry, and atomic force microscopy. The surface energy of HOPG was estimated by contact angle measurements using the Owens-Wendt method. The interaction of gases (Ar, He, H-2, N-2, and air) with graphite was studied by a captive bubble method, in. which the gas bubble was in.contact with the exfoliated graphite surface in water media. The, experimental data were corroborated by molecular dynamics simulations and density,functional theory calculations. The surface energy of HOPG equaled to 52.8 mJ/m(2) and more of 95% of the surface energy was attributed to dispersion interactions. The results On gas-surface interaction indicated that HOPG surface had gasphilic behavior for helium and hydrogen, while gasphobic behavior for argon and nitrogen. The results showed that the variation of the gas contact angle was related to the balance between the gas-surface and gas-gas interaction potentials. For helium and hydrogen the gas-surface interaction was particularly high compared to gas-gas interaction and this promoted the favorable interaction with graphite surface.
机译:密闭气体与固体表面浸入水中的相互作用是许多重要领域的共同主题,例如自清洁表面,储气和感测。因此,我们研究了水介质中的气石墨相互作用。石墨表面通过机械剥离的高度取向热解石墨(HOPG)制备。通过X射线光电子能谱,轮廓测定法和原子力显微镜研究表面化学和形态。使用Owens-Wendt方法通过接触角测量估计HOPG的表面能。通过俘虏气泡法研究了气体(Ar,He,H-2,N-2,N-2,N-2和空气)的相互作用,进入。气泡在水介质中与剥落的石墨表面联系。通过分子动力学模拟和密度,功能理论计算得到证实的实验数据。 Hopg的表面能等于52.8mJ / m(2)和更多的95%的表面能归因于分散相互作用。气体表面相互作用的结果表明HOPG表面具有氦气和氢气的胞外行为,而氩气和氮的胃肠行为。结果表明,气体接触角的变化与气体表面和气体气体相互作用电位之间的平衡有关。对于氦气和氢气,与气体气体相互作用相比,气体表面相互作用特别高,并且这促进了与石墨表面的良好相互作用。

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