Conformation dependence of charge transfer and level alignment in nitrobenzene junctions with pyridyl anchor groups
arXiv:1004.1323 · doi:10.1103/PhysRevB.81.165429
Abstract
The alignment of molecular levels with the Fermi energy in single molecule junctions is a crucial factor in determining their conductance or the observability of quantum interference effects. In the present study which is based on density functional theory calculations, we explore the zero-bias charge transfer and level alignment for nitro-bipyridyl-phenyl adsorbed between two gold surfaces which we find to vary significantly with the molecular conformation. The net charge transfer is the result of two opposing effects, namely Pauli repulsion at the interface between the molecule and the leads, and the electron accepting nature of the NO group, where only the latter which we analyze in terms of the electronegativity of the isolated molecules depends on the two intra-molecular torsion angles. We provide evidence that the conformation dependence of the alignment of molecular levels and peaks in the transmission function can indeed be understood in terms of charge transfer for this system, and that other properties such as molecular dipoles do not play a significant role. Our study is relevant for device design in molecular electronics where nitrobenzene appears as a component in proposals for rectification, quantum interference or chemical gating.
10 pages, 6 figures
References in corpus (9)
- Dependence of Single Molecule Junction Conductance on Molecular Conformation
- Electronics and Chemistry: Varying Single Molecule Junction Conductance Using Chemical Substituents
- Polarization-induced renormalization of molecular levels at metallic and semiconducting surfaces
- Renormalization of Molecular Quasiparticle Levels at Metal-Molecule Interfaces: Trends Across Binding Regimes
- Benchmark density functional theory calculations for nano-scale conductance
- Tilt-angle landscapes and temperature dependence of the conductance in biphenyl-dithiol single-molecule junctions
- Fermi level alignment in molecular nanojunctions and its relation to charge transfer
- Impact of Exchange-Correlation Effects on the IV Characteristics of a Molecular Junction
- Conformation dependence of molecular conductance: chemistry versus geometry
Cited by in corpus (8)
- High-Conductive Organometallic Molecular Wires with Delocalized Electron Systems Strongly Coupled to Metal Electrodes
- Controlling the transmission line shape of molecular t-stubs and potential thermoelectric applications
- Charge localisation on a redox-active single molecule junction and its influence on coherent electron transport
- A density functional theory based direct comparison of coherent tunnelling and electron hopping in redox-active single molecule junctions
- A Density Functional Theory based study of Electron Transport Through Ferrocene Compounds with Different Anchor Groups in Different Adsorption Configurations of A STM-setup
- Enhancing the sensitivity and selectivity of pyrene-based sensors for detection of small gaseous molecules via destructive quantum interference
- Electrode effects on the observability of destructive quantum interference in single-molecule junctions
- Density functional theory based calculations of the transfer integral in a redox-active single molecule junction