Title of article :
Rectification Ratio Enhancement and Functionalized Pyrene: DFT+NEGF
Author/Authors :
Afshari, S School of Chemistry - Damghan University , Jahanbin Sardroodi, J Molecular Simulation Lab - Azarbaijan Shahid Madani University, Tabriz
Abstract :
Electron transport properties of pure and oxygen and/or methyl substituted pyrene between two semi-infinite aluminum atomic
electrodes have been investigated by means of density functional theory plus the non-equilibrium green’s function method. The electrodes
were represented by a slab of Al atoms oriented along the [111] plane. The computations were carried out in the bias voltage range of 0.0
up to 2.0 V under three gate voltages including -3.0, 0.0 and +3.0 V. The results showed negative differential resistance and relatively high
rectification. All of the calculations were carried out with Open source Package for Material eXplorer (OPENMX) 3.6 computer code
within the generalized gradient approximation for the exchange-correlation energy and norm-conserving Kleinman-Bylander pseudo
potentials. The observed rectifying and the negative differential resistance were justified using the transmission spectrum and its integration
in the corresponding bias window. Also, the negative differential resistance behavior was investigated by studying the density of states of
left electrode, central region and right electrode and their overlaps.
Keywords :
Pyrene , Nano electronic , NDR , Rectifier
Journal title :
Astroparticle Physics