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Study of adsorption of Neon on open Carbon nanohorns aggregates.

机译:氖在开放碳纳米角聚集体上的吸附研究。

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摘要

Adsorption isotherms can be used to determine surface area of a substrate and the heat released when adsorption occurs. Our measurements are done determining the equilibrium pressures corresponding to a given amount of gas adsorbed on a substrate at constant temperature. The adsorption studies were done on aggregates of open dahlia-like carbon nanohorns. The nanohorns were oxidized for 9 hours at 550 °C to open them up and render their interior space accessible for adsorption. Volumetric adsorption measurements of Ne were performed at twelve different temperatures between 19 K and 48 K. The isotherms showed two substeps. The first substep corresponds to adsorption on the high energy binding sites in the interior of the nanohorns, near the tip. The second substep corresponds to low energy binding sites both on the outside of the nanotubes and inside the nanotube away from the tip. The isosteric heat measurements obtained from the isotherm data also shows these two distinct substeps. The effective surface area of the open nanotubes was determined from the isotherms using the point-B method. The isosteric heat and surface area data for neon on open nanohorns were compared to two similar experiments of neon adsorbed on aggregates of closed nanohorns.
机译:吸附等温线可用于确定基材的表面积以及发生吸附时释放的热量。我们的测量已经完成,确定了在恒定温度下对应于吸附在基材上的给定气体量的平衡压力。吸附研究是在开放的大丽花状碳纳米角聚集体上进行的。纳米角在550°C的温度下氧化9小时以打开纳米角并使其内部空间易于吸附。 Ne的体积吸附测量是在19 K和48 K之间的十二个不同温度下进行的。等温线显示了两个子步骤。第一个子步骤对应于吸附在尖端附近纳米角内部的高能结合位点上。第二子步骤对应于纳米管外部和远离尖端的纳米管内部的低能结合位点。从等温线数据获得的等排热测量结果也显示了这两个不同的子步骤。使用B点法从等温线确定开口的纳米管的有效表面积。将开式纳米角上的氖的等构体热和表面积数据与吸附在闭式纳米角的聚集体上的两个相似的氖实验进行了比较。

著录项

  • 作者

    Ziegler, Carl Andrew.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Physics General.;Physics Optics.
  • 学位 M.S.
  • 年度 2013
  • 页码 37 p.
  • 总页数 37
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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