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High resolution transmission electron microscopic study of nanoporous carbon consisting of curved single graphite sheets

机译:由弯曲单石墨板组成的纳米多孔碳的高分辨率透射电子显微镜研究

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A high resolution transmission electron microscopic study of a nanoporous carbon rich in curved graphite monolayers is presented. Observations of very thin regions. including the effect of tilting the specimen with respect to the electron beam, are reported. The initiation of single sheet material on an oriented graphite substrate is also observed. When combined with image simulations and independent measurements of the density (1.37g cm (sup -3)) and sp(sup 3)/sp(sup 2)+sp(sup 2) bonding fraction (0.16), these observations suggest that this material is a two phase mixture containing a relatively low density aggregation of essentially capped single shells like squat nanotubes and polyhedra, plus a relatively dense 'amorphous' carbon structure which may be described using a random-Schwarzite model. Some negatively-curved sheets were also identified in the low density phase. Finally, some discussion is offered regarding the growth mechanisms responsible for this nanoporous carbon and its relationship with the structures of amorphous carbons across a broad range of densities, porosities and sp(sup 3)/sp(sup 2)+sp(sup 3) bonding fractions. 29 refs., 8 figs., 2 tabs.

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