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Confident methods for the evaluation of the hydrogen content in nanoporous carbon microfibers

机译:评估纳米多孔碳微纤维中氢含量的放心方法

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摘要

Nanoporous carbon microfibers were grown by chemical vapor deposition in the vapor-liquid solid mode using different fluid hydrocarbons as precursors in different proportions. The as-grown samples were further treated in argon and hydrogen atmospheres at different pressure conditions and annealed at several temperatures in order to deduce the best conditions for the incorporation and re-incorporation of hydrogen into the microfibers through the nanopores. Since there are some discrepancies in the results on the hydrogen content obtained under vacuum conditions, in this work, we have measured the hydrogen content in the microfibers using several analytical methods in ambient conditions: surface tension, mass density, and Raman measurements. A discussion on the validity of the results obtained through the correlation between them is the purpose of the present work.
机译:纳米多孔碳微纤维是通过化学汽相沉积以气液固模式生长的,其中使用不同比例的不同流体烃作为前体。将生长中的样品在氩气和氢气气氛中在不同压力条件下进一步处理,并在几个温度下进行退火,以便推断出通过纳米孔将氢掺入和重新掺入微纤维的最佳条件。由于在真空条件下获得的氢含量结果存在一些差异,在这项工作中,我们在环境条件下使用几种分析方法测量了微纤维中的氢含量:表面张力,质量密度和拉曼测量。通过它们之间的相关性获得的结果的有效性的讨论是本工作的目的。

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