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On the solid hydrogen carrier intercalation in graphane-like regions in carbon-based nanostructures

机译:碳基纳米结构中石墨烯样区域中固体氢载体的嵌入

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摘要

Thermodynamic and experimental backgrounds of the condensed hydrogen storage problem are considered. It results in developing an effective method of producing a high-density solid hydrogen carrier by means of hydrogen intercalation in carbonaceous nanomaterials at relevant temperatures and pressures (at the cost of the hydrogen association energy). This is a much more technological method, in comparison with the current megabar compression dynamic and static methods. As is also shown, one of the known processes of chemisorption of hydrogen in some carbonaceous nanostructures can be related to formation of graphane-like (I.e., carbohydride-like) nanoregions. By using gravimetric and electron microscopy data, the density values (ρH = 0.7±0.2g(H_2)/cm~3(H_2), ρH = 0.28±0.08g(H_2)/cm!3(system)),of the intercalated solid molecular (I.e., reversible) hydrogen in graphane-like nanofibers (≥17 wt % H_2 has been denned. It corresponds to a much more efficient hydrogen storage technology, in comparison with the current ones, and relevance to the U.S. DOE requirements and targets for 2015.
机译:考虑了冷凝氢存储问题的热力学和实验背景。结果导致开发出一种有效方法,该方法通过在相关温度和压力下(以氢缔合能为代价)将氢插入碳质纳米材料中来制备高密度固体氢载体。与当前的兆巴压缩动态和静态方法相比,这是一种技术含量更高的方法。还如图所示,在一些碳质纳米结构中氢化学吸附的已知方法之一可能与形成石墨烷状(即,碳氢化合物状)纳米区域有关。通过重量和电子显微镜数据,插层的密度值(ρH= 0.7±0.2g(H_2)/ cm〜3(H_2),ρH= 0.28±0.08g(H_2)/ cm!3(系统))石墨烯状纳米纤维(≥17 wt%H_2)中的固体分子(即可逆)氢已经被鉴定,与目前的氢相比,它是一种效率更高的储氢技术,与美国能源部的要求和目标相关为2015年。

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