In interfacing man-made electronic components with specifically folded biomacromolecules, the perturbative effects of junction structure on any signal generated should be considered. We report herein on the electron-transfer characteristics of the blue copper metalloprotein, azurin, as characterized at a refined level by conducting atomic force microscopy (C-AFM). Specifically, the modulation of current-voltage (I-V) behavior with compressional force has been examined. In the absence of assignable resonant electron tunneling within the confined bias region, from -1 to 1 V, the I-V behavior was analyzed with a modified Simmons formula. To interpret the variation of tunneling barrier height and barrier length obtained by fitting with the modi...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Azurin proteins are the workhorse of protein electronics. This is a branch of biomolecular electroni...
In interfacing man-made electronic components with specifically folded biomacromolecules, the pertur...
In interfacing man-made electronic components with specifically folded biomacromolecules, the pertur...
Previous work has shown that protein molecules can be trapped between the conductive surfaces presen...
The transport characteristics of the blue copper metalloprotein, azurin, have been characterised by ...
Though the incorporation of sensory or potentially-switchable biological entities into electronic de...
The interfacing of man-made electronic components with specifically-folded biomacromolecules lies ce...
Recent work by a number of groups has highlighted the emerging potential associated with the marriag...
Licensee MDPI, Basel, Switzerland. Protein-based electronics is an emerging field which has attracte...
Transduction of biorecognition events into electrical signals through integration of single redox me...
This paper addresses some of the challenges met in electrical characterization of biomolecules, name...
Conductive probe atomic force microscopy (CP-AFM) has been used to investigate electronic transport ...
AbstractBackground: We would like to understand how electron flow is controlled in biological molecu...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Azurin proteins are the workhorse of protein electronics. This is a branch of biomolecular electroni...
In interfacing man-made electronic components with specifically folded biomacromolecules, the pertur...
In interfacing man-made electronic components with specifically folded biomacromolecules, the pertur...
Previous work has shown that protein molecules can be trapped between the conductive surfaces presen...
The transport characteristics of the blue copper metalloprotein, azurin, have been characterised by ...
Though the incorporation of sensory or potentially-switchable biological entities into electronic de...
The interfacing of man-made electronic components with specifically-folded biomacromolecules lies ce...
Recent work by a number of groups has highlighted the emerging potential associated with the marriag...
Licensee MDPI, Basel, Switzerland. Protein-based electronics is an emerging field which has attracte...
Transduction of biorecognition events into electrical signals through integration of single redox me...
This paper addresses some of the challenges met in electrical characterization of biomolecules, name...
Conductive probe atomic force microscopy (CP-AFM) has been used to investigate electronic transport ...
AbstractBackground: We would like to understand how electron flow is controlled in biological molecu...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Azurin proteins are the workhorse of protein electronics. This is a branch of biomolecular electroni...