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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Structure of nanoporous carbon produced from boron carbide
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Structure of nanoporous carbon produced from boron carbide

机译:Structure of nanoporous carbon produced from boron carbide

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The structure of nanoporous carbon produced by chlorination of powdered boron carbide at 600, 800, 1000, 1300, 1500, and 1800 deg C has been studied by scanning electron microscopy, X-ray diffraction analysis, helium pyenometry, and low-temperature adsorption of nitrogen. On the basis of the results obtained, suggestions are made concerning the type of organization of the nanoporous structure of these materials. The evolution of the structure of nanoporous carbon is analyzed in relation to the synthesis temperature of nanoporous carbon. It is shown that, as the chlorination temperature increases, the structure of nanoporous carbon becomes more perfect: it changes from paracrystalline to turbostratic. The specific surface area decreases from 2200 to 36 m~2/g, the volume of micropores decreases from 0.93 to 0.01 cm Vg, and that of mesopores first increases from 0.15cm~3/g (600 deg C) to 0.57cm~3/g (1000 deg C) and then decreases to 0.19cm~3/g (1800 deg C). The total pore volume decreases from 1.08 to 0.20cm~3/g.

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