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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Multiscale molecular thermodynamics of graphene-oxide liquid-phase exfoliation
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Multiscale molecular thermodynamics of graphene-oxide liquid-phase exfoliation

机译:金属型氧化物液相去角度的多尺度分子热力学

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摘要

Liquid-phase exfoliation is one of the most feasible methods for mass-production of two-dimensional (2D) nanomaterials such as graphene, graphene-oxide (GO), etc. Assessing requirements for successful exfoliation necessitates molecular-level thermodynamic analysis that can provide quantitative measures such as free energy changes. Here we explain this methodology and apply it to the production of GO that is used as a precursor for graphene synthesis and as an ultrathin substrate for many applications. Three different routes to GO exfoliation are studied, namely parallel and perpendicular to the GO surface as well as exfoliation via edge bending, using multi-scale combination of density functional, force field, and continuum approaches. Detailed analysis of free energy variations reveals relative feasibility of different exfoliation mechanisms and their dependence on system size and surface coverage. The methodology is general and can be applied to liquid-phase exfoliation of other 2D nanomaterials.
机译:液相剥离是诸如石墨烯,石墨烯 - 氧化物(GO)等的二维(2D)纳米材料的大规模生产方法之一。评估成功剥离的要求需要可以提供的分子水平热力学分析定量措施,如自由能变化。在这里,我们解释了这种方法,并将其应用于使用作为石墨烯合成的前体和许多应用的超薄基材的生产。研究了三种不同的去剥离路线,即通过密度函数,力场和连续函数的多尺度组合,通过边缘弯曲平行和垂直于去表面以及通过边缘弯曲的剥离。对自由能变化的详细分析揭示了不同剥离机制的相对可行性及其对系统尺寸和表面覆盖的依赖性。方法是通用的,可以应用于其他2D纳米材料的液相去角质。

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    Wright State Univ Dept Mech &

    Mat Engn 3640 Colonel Glenn Highway Dayton OH 45435 USA;

    Wright State Univ Dept Mech &

    Mat Engn 3640 Colonel Glenn Highway Dayton OH 45435 USA;

    Wright State Univ Dept Mech &

    Mat Engn 3640 Colonel Glenn Highway Dayton OH 45435 USA;

    Wright State Univ Dept Mech &

    Mat Engn 3640 Colonel Glenn Highway Dayton OH 45435 USA;

    Angstron Mat LLC 1240 McCook Ave Dayton OH 45404 USA;

    Angstron Mat LLC 1240 McCook Ave Dayton OH 45404 USA;

    Angstron Mat LLC 1240 McCook Ave Dayton OH 45404 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
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