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Molecular simulations and measurement of adsorption in porous carbon nanotubes

机译:多孔碳纳米管中吸附的分子模拟及其测量

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Interest in carbon nanotubes as potential adsorbents has been stimulated by a claim that they might be useful for hydrogen storage at room temperature. Open ended carbon nanotubes are potentially powerful carbon adsorbents with cylindrical micropores or mesopores, depending upon their diameter. additionally, the interstices in arrays of nanotubes may provide supplementary microporous or mesoporous adsorption spaces. Grand canonical Monte Carlo molecualr simulations of adsorption of nitrogen at 77 K use gas-solid potentials that have been developed for exohedral and endohedral adsorption in model single-wall nanotubes. Simulations have been carried out on individual and square arrays of nanotubes. Experimetnal measurements of adsorption of nitrogen at 77 K have been performed on single-wall and multi-wall nanotubes.
机译:作为潜在吸附剂的碳纳米管的兴趣已经通过权利要求刺激它们可用于室温下的储氢。开放式碳纳米管是具有圆柱微孔或中孔的潜在强力的碳吸附剂,这取决于它们的直径。另外,纳米管阵列中的间隙可以提供补充的微孔或中孔吸附空间。大规范蒙特卡罗分子仿氮的吸附在77 k下使用的气体固体潜力在模型单壁纳米管中开发出用于Exohedral和Endohedral的吸附。已经在纳米管的个体和方形阵列上进行了模拟。已经在单壁和多壁纳米管上进行了77 kS的氮气吸附的经验测量。

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