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The Nature of Graphene Surfaces as Determined from the Wettability Studies of Basal and Edge Planes

机译:由基面和边缘平面的润湿性研究确定的石墨烯表面的性质

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摘要

Effective exploitation of the electronic properties of graphene in aqueous medium has been limited due to lack of information about its wettability characteristics. In this paper, fundamental wettability studies of the face and edge planes of graphene were accomplished through contact angle measurements of the as-received and oxidized surfaces. Further, Raman spectroscopic studies were performed to analyze the effect of oxidation on the graphene surfaces based on the D and G bands. Atomic force microscopy (AFM) was used for surface force measurements to determine the iso-electric point (IEP) of the face and edge surface. The interaction of hydrophobic fullerene and hydrophilic fullerol nanoparticles on the graphene face and edge surfaces was studied through AFM imaging. The zeta potential measurements of the above mentioned carbon nanoparticles were also carried out to confirm that the interaction was due to hydrophobic or hydrophilic forces and not due to electrostatic interactions. In addition molecular dynamics and ab-initio simulations were also carried out to verify the interactions of the carbon nanoparticles with the graphite surfaces.
机译:由于缺乏有关其润湿性的信息,有效利用石墨烯在水性介质中的电子性能受到了限制。在本文中,石墨烯的表面和边缘平面的基本润湿性研究是通过测量接收和氧化表面的接触角来完成的。此外,进行了拉曼光谱研究,以基于D和G谱带分析氧化对石墨烯表面的影响。使用原子力显微镜(AFM)进行表面力测量,以确定表面和边缘表面的等电点(IEP)。通过原子力显微镜成像研究了疏水性富勒烯和亲水性富勒烯纳米粒子在石墨烯表面和边缘表面的相互作用。还进行了上述碳纳米颗粒的ζ电势测量,以确认该相互作用是由于疏水力或亲水力而不是由于静电相互作用。此外,还进行了分子动力学和从头算的模拟,以验证碳纳米颗粒与石墨表面的相互作用。

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  • 会议地点 Chicago IL(US)
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    Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT 84112, USA;

    Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT 84112, USA ,Department of Mining Engineering, Inonu University, Malatya 44280, Turkey;

    Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT 84112, USA;

    Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT 84112, USA;

    Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT 84112, USA;

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