Transitional behaviour in the transformation from active end planes to stable loops caused by annealing

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Abstract

Here we investigate the stabilization process on the active outer/inner surfaces (or the end plane of a graphene sheet) for shortened cup-stacked-type carbon nanotubes caused by annealing, utilizing both analytic and electrochemical techniques. The suggested schematic procedure for loop formation is as follows: (a) formation of single-type loops between neighbouring truncated conical graphene layers at 900-1200°C through a zipping mechanism after the evolution of hydrogen gas; (b) the transition from single- to multi-type loops above 1500°C accompanying a decrease in specific surface area.

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Endo, M., Lee, B. J., Kim, Y. A., Kim, Y. J., Muramatsu, H., Yanagisawa, T., … Dresselhaus, M. S. (2003). Transitional behaviour in the transformation from active end planes to stable loops caused by annealing. New Journal of Physics, 5. https://doi.org/10.1088/1367-2630/5/1/121

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