We conducted a theoretical study of electron transport through junctions of the blue-copper azurin from Pseudomonas aeruginosa. We found that single-site hopping can lead to either higher or lower current values compared to fully coherent transport. This depends on the structural details of the junctions as well as the alignment of the protein orbitals. Moreover, we show how the asymmetry of the IV curves can be affected by the position of the tip in the junction and that, under specific conditions, such a hopping mechanism is consistent with a fairly low temperature dependence of the current. Finally, we show that increasing the number of hopping sites leads to higher hopping currents. Our findings, from fully quantum calculations, provide...
Recent experimental and theoretical investigations show that water molecules between or near redox p...
Electron coupling through a beta strand has been investigated by measurement of the intramolecular e...
We have constructed and structurally characterized a Pseudomonas aeruginosa azurin mutant Re126WWCu ...
We conducted a theoretical study into electron transport through junctions of the blue-copper azurin...
Azurin proteins are the workhorse of protein electronics. This is a branch of biomolecular electroni...
Hopping was investigated through an established electron transfer pathway that traverses the interio...
AbstractBackground: We would like to understand how electron flow is controlled in biological molecu...
We previously showed that electron transfer (ET) between electronically excited Re (^*RE) and Cu(I)i...
We studied the coherent electron transport through metal–protein–metal junctions based on a blue cop...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
We are investigating interfacial electron transfer rates of P. aeruginosa azurin and its mutants usi...
Long-range electron tunneling through metalloproteins is facilitated by evolutionary tuning of donor...
Long-range electron transfer is a central component of processes that are essential for biological f...
We investigate with semi-empirical extended Hückel theory calculations the tunneling matrix element ...
Long-range electron transfer (ET) reactions are central to many biochemical processes. To accomplish...
Recent experimental and theoretical investigations show that water molecules between or near redox p...
Electron coupling through a beta strand has been investigated by measurement of the intramolecular e...
We have constructed and structurally characterized a Pseudomonas aeruginosa azurin mutant Re126WWCu ...
We conducted a theoretical study into electron transport through junctions of the blue-copper azurin...
Azurin proteins are the workhorse of protein electronics. This is a branch of biomolecular electroni...
Hopping was investigated through an established electron transfer pathway that traverses the interio...
AbstractBackground: We would like to understand how electron flow is controlled in biological molecu...
We previously showed that electron transfer (ET) between electronically excited Re (^*RE) and Cu(I)i...
We studied the coherent electron transport through metal–protein–metal junctions based on a blue cop...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
We are investigating interfacial electron transfer rates of P. aeruginosa azurin and its mutants usi...
Long-range electron tunneling through metalloproteins is facilitated by evolutionary tuning of donor...
Long-range electron transfer is a central component of processes that are essential for biological f...
We investigate with semi-empirical extended Hückel theory calculations the tunneling matrix element ...
Long-range electron transfer (ET) reactions are central to many biochemical processes. To accomplish...
Recent experimental and theoretical investigations show that water molecules between or near redox p...
Electron coupling through a beta strand has been investigated by measurement of the intramolecular e...
We have constructed and structurally characterized a Pseudomonas aeruginosa azurin mutant Re126WWCu ...