arXiv Analytics

Sign in

arXiv:0804.1351 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Band Alignment in Molecular Devices: Influence of Anchoring Group and Metal Work Function

Jian-guo Wang, Emil Prodan, Roberto Car, Annabella Selloni

Published 2008-04-08Version 1

We present periodic Density Functional Theory calculations of the electronic properties of molecular junctions formed by amine-, and thiol-terminated alkane chains attached to two metal (Au, Ag) electrodes. Based on extensive analysis that includes molecular monolayers of varying densities, we establish a relationship between the alignment of the molecular energy levels and the interface dipoles, which shows that the band alignment (BA) in the limit of long, isolated chains is independent of the link group and can be computed from a reference system of non interacting molecule + metal electrodes. The main difference between the amine and thiol linkers is the effective dipole moment at the contact. This is very large, about 4.5 D, for amine linkers, leading to a strong dependence of the BA on the monolayer density and a slow convergence to the isolated molecule limit. Instead, this convergence is fast for S anchors due to the very small, ~ 0.2 D, effective dipoles at the contacts.

Related articles: Most relevant | Search more
arXiv:1902.08864 [cond-mat.mes-hall] (Published 2019-02-23)
Current Nonconservation of Molecular Devices in the Presence of a Nonlocal Potential
arXiv:cond-mat/0610871 (Published 2006-10-31)
Effects of relative orientation of the molecules on electron transport in molecular devices
arXiv:1011.2625 [cond-mat.mes-hall] (Published 2010-11-11)
First-principles investigation of dynamical properties of molecular devices under a steplike pulse