We calculate potentials of the mean force for twenty amino acids in the vicinity of the (111) surface of gold, for several dipeptides, and for some analogs of the side chains, using molecular dynamics simulations and the umbrella sampling method. We compare results obtained within three different force fields: one hydrophobic (for a contaminated surface) and two hydrophilic. All of these fields lead to good binding with very different specificities and different patterns in the density and polarization of water. The covalent bond with the sulfur atom on cysteine is modeled by the Morse potential. We demonstrate that binding energies of dipeptides are different than the combined binding energies of their amino-acidic components. For the hydr...
Computational simulation of peptide adsorption at the aqueous gold interface is key to advancing the...
Noncovalent recognition between peptides and inorganic materials is an established phenomenon. Key t...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
We calculate potentials of the mean force for 20 amino acids in the vicinity of the (111) surface of...
A classical atomistic force field to describe the interaction of proteins with gold (111) surfaces i...
A classical atomistic force field to describe the interaction of proteins with gold (111) surfaces i...
Computational simulation of peptide adsorption at the aqueous gold interface is key to advancing the...
The molecular simulation of biomolecules adsorbed at noble metal interfaces can assist in the develo...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
We report all-atom molecular dynamics simulations following adsorption of gold-binding and non-gold-...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
Computational simulation of peptide adsorption at the aqueous gold interface is key to advancing the...
Noncovalent recognition between peptides and inorganic materials is an established phenomenon. Key t...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
We calculate potentials of the mean force for 20 amino acids in the vicinity of the (111) surface of...
A classical atomistic force field to describe the interaction of proteins with gold (111) surfaces i...
A classical atomistic force field to describe the interaction of proteins with gold (111) surfaces i...
Computational simulation of peptide adsorption at the aqueous gold interface is key to advancing the...
The molecular simulation of biomolecules adsorbed at noble metal interfaces can assist in the develo...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
We report all-atom molecular dynamics simulations following adsorption of gold-binding and non-gold-...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...
Computational simulation of peptide adsorption at the aqueous gold interface is key to advancing the...
Noncovalent recognition between peptides and inorganic materials is an established phenomenon. Key t...
The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and...