Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoelectronic devices based on the intriguing interplay among its electron transfer (ET), vibrational, and optical properties. A full comprehension of its dynamical and functional behavior is required for efficient applications. Here, AZ bound to gold electrode via its disulfide bridge was investigated by a molecular dynamics simulation approach taking into account for gold electron polarization which provides a more realistic description of the protein-gold interaction. Upon binding to gold, AZ undergoes slight changes in its secondary structure with the preservation of the copper-containing active site structure. Binding of AZ to gold promotes ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
We have coupled hybrid quantum mechanics (density functional theory; Car-Parrinello)/molecular mecha...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
Electron transfer proteins, such as azurin (a blue copper protein), are promising candidates for the...
We have coupled hybrid quantum mechanics (density functional theory; Car-Parrinello)/molecular mecha...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
Understanding the factors governing the rate of electron transfer processes in proteins is crucial n...
To be able to perform Molecular Dynamics (MD) simulations of proteins, a model is needed to describe...