Making biomolecular electronics a reality will require control over charge transport across biomolecules. Here we show that chemical modulation of the coupling between one of the electronic contacts and the biomolecules in a solid-state junction allows controlling electron transport (ETp) across the junction. Employing the protein azurin (Az), we achieve such modulation as follows: Az is covalently bound by Au-S bonding to a lithographically prepared Au electrode (Au-Az). Au nanowires (AuNW) onto which linker molecules, with free carboxylic group, are bound via Au-S bonds serve as top electrode. Current voltage plots of AuNW-linkerCOOH//Az-Au junctions have been shown earlier to exhibit step-like features, due to resonant tunneling through discrete Az energy levels. Forming an amide bond between the free carboxylic group of the AuNW-bound linker and Az yields AuNW-linkerCO-NH-Az-Au junctions. This Az-linker bond switches the ETp mechanism from resonant to off-resonant tunneling. By varying the extent of this amide bonding, the current voltage dependence can be controlled between these two mechanisms, thus providing a platform for altering and controlling the ETp mechanism purely by chemical modification in a two-terminal device, i.e., without a gate electrode. Using results from conductance, including the energy barrier and electrode molecule coupling parameters extracted from current voltage fitting and normalized differential conductance analysis and from inelastic-electron-tunneling and photoelectron spectroscopies, we determine the Az frontier orbital energies, with respect to the Au Fermi level, for four junction configurations, differing only in electrode-protein coupling. Our approach and findings open the way to both qualitative and quantitative control of biomolecular electronic junctions.
Journal article
Protein Electronics: Chemical Modulation of Contacts Control Energy Level Alignment in Gold-Azurin-Gold Junctions
Journal of the American Chemical Society, Vol.140(41), pp.13317-13326
17/Oct/2018
Abstract
Details
- Title
- Protein Electronics; Chemical Modulation of Contacts Control Energy Level Alignment in Gold-Azurin-Gold Junctions
- Creators
- Jerry A. Fereiro (null) - The Weizmann Institute of ScienceGilad Porat (null) - The Weizmann Institute of ScienceTatyana Bendikov (null) - 972WIS_INST___100Israel Pecht (Corresponding Author) - 972WIS_INST___120Mordechai Sheves (null) - The Weizmann Institute of ScienceDavid Cahen (null) - The Weizmann Institute of Science
- Resource Type
- Journal article
- Publication Details
- Journal of the American Chemical Society, Vol.140(41), pp.13317-13326; 17/Oct/2018
- Number of pages
- 10
- Language
- English
- DOI
- https://doi.org/10.1021/jacs.8b07742
- Grant note
- We thank Prof. Juan Carlos Cuevas (Universidad Autónoma de Madrid, Spain), Dr. Ayelet Vilan, and Mr. Ben Kayser (Weizmann Inst.) for fruitful discussions. J.F. is grateful to the Azrieli Foundation for the award of an Azrieli Fellowship. D.C. and M.S. thank the Israel Science Foundation, the Minerva Foundation (Munich), the Benoziyo Endowment Fund for the Advancement of Science, and J & R Center for Scientific Research and the Kimmelman center for Biomolecular Structure and Assembly for partial support. M.S. holds the Katzir-Makineni Chair in Chemistry.
- Record Identifier
- 993263473903596
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