Title of article :
Computational studies on carbon nanotubegraphene nanoribbon hybrids by density functional theory calculations
Author/Authors :
Omidvar، A. نويسنده Ph.D. degree candidate in Shiraz University , , Anafcheh، M. نويسنده Ph.D. degrees , , Hadipour، N.L. نويسنده Head of the laboratory and working group in Computational Chemistry at Tarbiat Modares University ,
Issue Information :
دوفصلنامه با شماره پیاپی 63 سال 2013
Abstract :
We have performed Density Functional Theory (DFT) calculations to investigate the influence
of carbone nanotube (CNT) size on the properties of the electronic structure of various junction models
constructed from (6, 0) CNT and graphene nanoribbon (GNR) units via covalent linkage. Chemical shielding
tensors and the HOMOLUMO gap have been calculated for different models of the investigated hybrids of
CNT and GNR. Our results indicate that the HOMOLUMO gap strongly depends on the number of atoms
and tube length, showing a decreasing trend with increasing the length of the tube and approaching zero
in Model 7. The isotropic and anisotropic Chemical Shift (CS) parameters are divided into some layers,
based on detecting similar electronic environments for the atomic sites of each layer.
Journal title :
Scientia Iranica(Transactions F: Nanotechnology)
Journal title :
Scientia Iranica(Transactions F: Nanotechnology)