In this work, we investigate the formation of redox protein Azurin (Az) monolayers on functionalized oxygen exposing surfaces. These metallo-proteins mediate electron transfer in the denitrifying chain of Pseudomonas bacteria and exhibit self-assembly properties, therefore they are good candidates for bio-electronic applications. Azurin monolayers are self-assembled onto silane functionalized surfaces and characterized by atomic force microscopy (AFM). We show also that a biomolecular field effect transistor (FET) in the solid state can be implemented by interconnecting an Azurin monolayer immobilized on SiO2 with two gold nanoelectrodes. Transport experiments, carried out at room temperature and ambient pressure, show FET behavior with co...
Transduction of biorecognition events into electrical signals through integration of single redox me...
A protein-based solid-state electronic device that operates in air is reported; it is fabricated by ...
Molecular recognition between two redox partners, azurin and cytochrome c 551, is studied at the sin...
A key challenge of the current research in nanoelectronics is the realization of biomolecular device...
A key challenge in nanoelectronics is the use of a bottom-up approach to fabricate nanodevices from ...
A key challenge in nanoelectronics is the use of a bottom-up approach to fabricate nanodevices from ...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
Thermodynamic and adsorption properties of protein monolayer electrochemistry (PME) are examined for...
A protein field effect transistor (FET) exploiting the redox and self-assembly properties of the met...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
Metalloproteins are redox molecules naturally shuttling electrons with high efficiency between molec...
A new type of transistor is presented. It is realised by using a metalloprotein; namely,azurin. Than...
A new type of transistor is presented. It is realised by using a metalloprotein; namely, azurin. Tha...
The rational design of azurin metalloprotein assemblies suitable for biomolecular electronics applic...
Azurin is a blue single copper protein involved in the respiratory chain of denitrifying bacteria. T...
Transduction of biorecognition events into electrical signals through integration of single redox me...
A protein-based solid-state electronic device that operates in air is reported; it is fabricated by ...
Molecular recognition between two redox partners, azurin and cytochrome c 551, is studied at the sin...
A key challenge of the current research in nanoelectronics is the realization of biomolecular device...
A key challenge in nanoelectronics is the use of a bottom-up approach to fabricate nanodevices from ...
A key challenge in nanoelectronics is the use of a bottom-up approach to fabricate nanodevices from ...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
Thermodynamic and adsorption properties of protein monolayer electrochemistry (PME) are examined for...
A protein field effect transistor (FET) exploiting the redox and self-assembly properties of the met...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
Metalloproteins are redox molecules naturally shuttling electrons with high efficiency between molec...
A new type of transistor is presented. It is realised by using a metalloprotein; namely,azurin. Than...
A new type of transistor is presented. It is realised by using a metalloprotein; namely, azurin. Tha...
The rational design of azurin metalloprotein assemblies suitable for biomolecular electronics applic...
Azurin is a blue single copper protein involved in the respiratory chain of denitrifying bacteria. T...
Transduction of biorecognition events into electrical signals through integration of single redox me...
A protein-based solid-state electronic device that operates in air is reported; it is fabricated by ...
Molecular recognition between two redox partners, azurin and cytochrome c 551, is studied at the sin...