首页> 外文会议>Symposium on Nanoparticulate Materials, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Hydrogen storage capacity improvement of nanostructured materials
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Hydrogen storage capacity improvement of nanostructured materials

机译:改善纳米结构材料的储氢能力

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Safe, lightweight, and cost-effective materials are required to practically store hydrogen for use in portable fuel cell applications. Compressed hydrogen and on-board hydrocarbon reforming present certain advantages, but their limitations must ultimately render them insufficient. Storage in hydrides and adsorption systems show promise in models and experimentation, but a practical medium remains unavailable. To study hydrogen storage properties a new volumetric testing apparatus was designed and constructed. Adsorption conditions are evaluated up to pressures exceeding 250 bar and a broad range of temperatures. RF sputtering was used to introduce metals to carbon nanotubes with the aim to enhance hydrogen storage. Here we show a significant improvement in the gravimetric storage density over that of as-prepared single-wall nanotube samples that may be due to the unique interface introduced.
机译:需要安全,轻便且具有成本效益的材料来实际存储氢,以用于便携式燃料电池应用。压缩氢气和机载烃重整具有某些优势,但它们的局限性最终必将使其不足。在氢化物和吸附系统中的存储在模型和实验中显示出了希望,但是仍然没有实用的介质。为了研究储氢性能,设计并构造了一种新的体积测试装置。在高达250 bar的压力和宽广的温度范围内评估吸附条件。 RF溅射被用来将金属引入碳纳米管,以增强氢的存储。在这里,我们显示出重量存储密度比准备好的单壁纳米管样品有了显着提高,这可能是由于引入了独特的界面所致。

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