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Structure,Chirality, and Formation of Giant Icosahedral Fullerenes and Spherical Graphitic Onions
Authors:Terrones  Mauricio  Terrones  Guillermo  Terrones  Humberto
Institution:(1) Advanced Materials Department, IPICYT Potosí Institute of Scientific and Technological Research, Venustiao Carranza 2425-A, San Luis Potosí, 78210, Mexico;(2) Process Science and Engineering Department, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington, 99352
Abstract:We describe the topology, structure, and stability of giant fullerenes exhibiting various symmetries (I, I h , D 2h , T). Our results demonstrate that it is possible to create two new families of nested ldquochiralrdquo icosahedral (I) fullerenes namely C260@C560@C980@C1520@, ...,and C140@C380@C740@C1220@ ..., which exhibit interlayer separations of ca. 3.4 Å. These chiral fullerenes are thought to possess metalliclike conduction properties. We discuss in detail the transformation of polyhedral graphitic particles into quasispherical nested giant fullerenes by reorganization of carbon atoms, which result in the formation of additional pentagonal and heptagonal carbon rings. These ldquosphericalrdquo structures are metastable and we believe they could be formed under extreme conditions, such as those produced by high-energy electron irradiation. There is circumstantial experimental evidence for the presence of heptagonal rings within these spherical fullerenes.
Keywords:Fullerenes  spherical onions  nested fullerenes  stability and symmetry
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