Title :
Electronic and transport properties of graphene nanoribbons
Author :
Hou, Zhufeng ; Yee, Marcus
Author_Institution :
Atomistix Asia Pacific Pte Ltd., Singapore
Abstract :
We present the electronic structures and transport properties of hydrogen-saturated graphene ribbons and its dependence on its termination edge, ribbon width, and impurity. The band structures, transmission spectrum, and current-voltage (I-V) characteristics of graphene ribbons have been calculated by using first-principles electronic structure methods and non-equilibrium Green´s functions technique. Our calculated results show that the graphene ribbons with zigzag shaped edges exhibit nonlinear behavior of I-V characteristics due to the overlapping of pi* and pi bands around Fermi level. As the width of zigzag chain of graphene ribbons increases, the overlapping of pi* and pi bands is enhanced and the voltage range for linear I-V response becomes narrower. The graphene ribbons with armchair shaped edges exhibit semiconducting properties and the band gap decreases with increasing ribbon width. The doping of B or N in graphene ribbons with armchair shaped edges slightly increases the current at lower bias voltage.
Keywords :
Fermi level; Green´s function methods; ab initio calculations; boron; carbon; elemental semiconductors; energy gap; nanostructured materials; nitrogen; semiconductor doping; C:B; C:N; Fermi level; armchair shaped edges; band gap; bias voltage; doping; electronic structures; electronic transport; first-principles methods; graphene nanoribbons; nonequilibrium Green´s functions technique; nonlinear behavior; pi bands; pi* bands; semiconducting properties; transmission spectrum; Bonding; Electrodes; FETs; Green´s function methods; Impurities; Light scattering; Nanotechnology; Open systems; Particle scattering; Voltage; Graphene; electronic transport; first-principles; nanoribbon;
Conference_Titel :
Nanotechnology, 2007. IEEE-NANO 2007. 7th IEEE Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-0607-4
Electronic_ISBN :
978-1-4244-0608-1
DOI :
10.1109/NANO.2007.4601252