Graphitic Structure and Surface Chemical Activity of Nanosize Carbon Spheres
نویسندگان
چکیده
Monodispersed nanosize carbon spheres have recently been synthesized using a mixed-valent oxide-catalytic carbonization (MVOCC) process. In this paper, a high surface porosity of carbon spheres produced by an interaction with WO, is reported. The interaction mechanism is due to the reduction of WO, to W driven by an internal Auger decay process under the stimulation of a high-energy electron beam in a transmission electron microscope; combination of the desorbed 0 with C results in the loss of local carbon species. This process occurs only for the atoms located at the surface and surface diffusion plays a dominant role. Closed shell “onion-like” concentric fullerenes have been observed, with a CsO molecule at the center. It is suggested that W atom(s) may also be trapped within the Cc0 cage. The spiral growth model proposed for the growth of large fullerenes and carbon spheres has been directly proved experimentally. High-resolution electron images suggest the presence of single-shell toroidal fullerenes.
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