We report on the fabrication of single-electron devices based on horse-spleen ferritin parti-cles. At low temperatures the current vs. voltage characteristics are stable, enabling the acquisition of reproducible data that establishes the Coulomb blockade as the main transport mechanism through them. Excellent agreement between the experimental data and the Coulomb blockade theory is demonstrated. Single-electron charge transport in ferritin, thus, establishes a route for further characterization of their, e.g., magnetic, properties down to the single-particle level, with prospects for electronic and medical applications.QN/van der Zant La
A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by ...
Human ferritin H-chain (HFt) nanoparticles represent one of the most appropriate vectors for cellula...
We study interaction effects on transport through a small metallic cluster connected to two ferromag...
We report on the fabrication of single-electron devices based on horse-spleen ferritin particles. At...
Ferritin, the iron storage protein, which is found in human body, holds great potential for applicat...
We demonstrate the assembly of nanoscale ferromagnetic single-electron transistors using atomic forc...
This thesis offers an investigation into two recently discovered effects within the quantum area of ...
Three-terminal single-electron transistor devices utilizing Al/Al(2)O(3) gate electrodes were develo...
Electron tunneling in ferritin and between ferritin cores (a transition metal (iron) oxide storage p...
Using first-principles methods, we study theoretically the properties of an individual {Fe-4} single...
We report exceptionally large tunnel magnetoresistance (TMR) for biomolecular tunnel junctions based...
We report on a summary of fabricating and characterizing nanoscaled ferromagnetic single-electron tr...
We have fabricated and measured transport properties of resistively coupled single-electron transist...
We consider the single-electron transistor with ferromagnetic outer electrodes and non-magnetic isla...
to structural analysis, including other ferritins that could not be solved by x-ray crystallography....
A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by ...
Human ferritin H-chain (HFt) nanoparticles represent one of the most appropriate vectors for cellula...
We study interaction effects on transport through a small metallic cluster connected to two ferromag...
We report on the fabrication of single-electron devices based on horse-spleen ferritin particles. At...
Ferritin, the iron storage protein, which is found in human body, holds great potential for applicat...
We demonstrate the assembly of nanoscale ferromagnetic single-electron transistors using atomic forc...
This thesis offers an investigation into two recently discovered effects within the quantum area of ...
Three-terminal single-electron transistor devices utilizing Al/Al(2)O(3) gate electrodes were develo...
Electron tunneling in ferritin and between ferritin cores (a transition metal (iron) oxide storage p...
Using first-principles methods, we study theoretically the properties of an individual {Fe-4} single...
We report exceptionally large tunnel magnetoresistance (TMR) for biomolecular tunnel junctions based...
We report on a summary of fabricating and characterizing nanoscaled ferromagnetic single-electron tr...
We have fabricated and measured transport properties of resistively coupled single-electron transist...
We consider the single-electron transistor with ferromagnetic outer electrodes and non-magnetic isla...
to structural analysis, including other ferritins that could not be solved by x-ray crystallography....
A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by ...
Human ferritin H-chain (HFt) nanoparticles represent one of the most appropriate vectors for cellula...
We study interaction effects on transport through a small metallic cluster connected to two ferromag...