Issue 9, 2012

Theoretical investigations of sp-sp2 hybridized zero-dimensional fullerenynes

Abstract

Widely recognized as the quintessential material, sp2 hybridized carbon material with low dimensions, such as zero-dimensional fullerene, one-dimensional carbon nanotube and two-dimensional graphene, has already compiled an impressive list of superlatives. Quite recently, one-dimensional sp-sp2 hybridized carbon tubular arrays with a wall thickness of about 40 nm and two-dimensional carbon films with the average thickness of 970 nm have been synthesized successfully. Thus, we expect that the existence of a sp-sp2 hybridized zero-dimensional carbon allotrope is possible. A novel and stable zero-dimensional carbon allotrope (fullerenyne) with sp-sp2 hybridization is introduced by means of density functional theory calculation and molecular dynamics confirmation. Unique porous characteristic C96 fullernenyne with an Oh symmetry group exhibits exceptionally high stability. We hope that the present study will lead to a further development of a broad new class of carbon materials.

Graphical abstract: Theoretical investigations of sp-sp2 hybridized zero-dimensional fullerenynes

Supplementary files

Article information

Article type
Communication
Submitted
08 Feb 2012
Accepted
13 Mar 2012
First published
16 Mar 2012

Nanoscale, 2012,4, 2839-2842

Theoretical investigations of sp-sp2 hybridized zero-dimensional fullerenynes

S. Zhang, Y. Zhang, S. Huang and C. Wang, Nanoscale, 2012, 4, 2839 DOI: 10.1039/C2NR30299C

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