Molecular electronic junction transport: some pathways and some ideas.
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Summary
Because there are many regimes and mechanisms in transport junctions, time scales, geometries, and inelastic scattering methods for trying to determine the properties of molecules within these junctions are discussed.
- Type
- article
- Published
- 2012-01-01
- Cited by
- 26
- References
- 180
- OpenAlex
- https://openalex.org/W43698932
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11138885
Keywords
Chemistry, Molecular electronics, Molecule, Function (biology), Mechanism (biology)
References
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- First-principles approach to electrical transport in atomic-scale nanostructures
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- Real-Time Electronic Monitoring of Adsorption Kinetics: Evidence for Two-Site Adsorption Mechanism of Dicarboxylic Acids on GaAs(100)
- Molecular Vibration Spectra by Electron Tunneling
Cited by
- Quantum theory of concerted electronic and nuclear fluxes associated with adiabatic intramolecular processes.
- In search of structure–function relationships in transition-metal based rectifiers
- Electronic communication through molecular bridges.
- Effect of metal complexation on the conductance of single-molecular wires measured at room temperature.
- Controlling molecular conductance: switching off π sites through protonation.
- Theoretical studies of a nanoparticle bridge platform for molecular electronics measurements
- Frontier orbital control of molecular conductance and its switching.
- A new method to induce molecular low bias negative differential resistance with multi-peaks.
- The Green’s function for the Hückel (tight binding) model
- Understanding molecular structure–function relationships in controlling nanoscale conductance
- Achieving Predictive Description of Molecular Conductance by Using a Range-Separated Hybrid Functional.
- Using coherence to enhance function in chemical and biophysical systems
- In-Situ Scrutiny of the Relationship between Polymorphic Phases and Properties of Self-Assembled Monolayers of a Biphenyl Based Thiol.
- Quo vadis, unimolecular electronics?
- Gate-Modulated Conductance of Extended Conjugation in Atomically Arrayed Molecular Assemblies
- Electronic Communication as a Transferable Property of Molecular Bridges?
- Controlling Single Molecule Conductance by Chemical Reaction
- Towards a First-Principles Evaluation of Transport Mechanisms in Molecular Wires.
- Design Considerations for Oligo(p-phenyleneethynylene) Organic Radicals in Molecular Junctions
- Achieved negative differential resistance behavior of Si/B-substituted into a C6 chain sandwiched between capped carbon nanotube junctions
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