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首页> 外文期刊>Physica, B. Condensed Matter >Study of neon adsorption on carbon nanocones using molecular dynamics simulation
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Study of neon adsorption on carbon nanocones using molecular dynamics simulation

机译:分子动力学模拟研究氖在碳纳米锥上的吸附

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摘要

We have used molecular dynamics simulation to study Ne adsorption on carbon nanocones. Adsorption isotherms were obtained at several temperatures between 22.67 and 49.82 K. Adsorption coverage, isosteric heat, and binding energy were calculated. Adsorption was observed both inside and outside of an individual carbon nanocone. The results indicate that the saturation coverage and saturation pressure depend on temperature. At saturation conditions, the maximum values of interior and exterior coverages are 0.17 and 0.39 neon per carbon, respectively. The results are compared to Ne adsorption on open-ended single-walled carbon nanotubes. It is found that adsorption coverages on carbon nanocones are greater than those on carbon nanotubes. The isosteric heat and binding energy of neon adsorption on nanocones indicate that nanocones and nanotubes have highly desirable characteristics as an adsorbent.
机译:我们已经使用分子动力学模拟来研究Ne在碳纳米锥上的吸附。在22.67和49.82 K之间的几个温度下获得了吸附等温线。计算了吸附覆盖率,等排热和结合能。在单个碳纳米锥的内部和外部均观察到吸附。结果表明,饱和覆盖率和饱和压力取决于温度。在饱和条件下,内部和外部覆盖率的最大值分别为每碳0.17和0.39氖。将结果与开放式单壁碳纳米管上的Ne吸附进行了比较。发现碳纳米锥上的吸附覆盖范围大于碳纳米管上的吸附覆盖范围。纳米锥上氖气的等排热和结合能表明,纳米锥和纳米管作为吸附剂具有非常理想的特性。

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