International audienceUnderstanding the mechanism of biomolecules’ interaction with inorganic surfaces might pave the way for the design of material interfaces with controlled and highly predictable properties. Here we have focused on the adsorption mechanism of facet-specific amino acids in the sequence of peptides selected for programmed synthesis of Pt(111) and Pt(100) nanocrystals. Using the first principles calculations we have demonstrated that the specific surface recognition of amino acid side chains occurs due to the combination of multiple processes: electron exchange, partial charge transfer and/or dispersive effects providing a high binding affinity to both polar and non-polar residues against both Pt facets. Our approach points...
We investigated molecular interactions involved in the selective binding of several short peptides d...
We investigated molecular interactions involved in the selective binding of several short peptides d...
At the nanometer scale, the physical and chemical properties of materials heavily depend on their si...
International audienceUnderstanding the mechanism of biomolecules’ interaction with inorganic surfac...
Engineering shape-controlled bionanomaterials requires comprehensive understanding of interactions b...
Peptides with inorganic materials recognition already started to impact a wide range of surface- rel...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
In examining adsorption of a few selected single amino acids on Au and Pd cluster models by density ...
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 ...
Surfactants with preferential adsorption to certain crystal facets have been widely employed to mani...
Metal nanocrystals enable new functionality in sensors, biomarkers, and catalysts while mechanisms o...
Metal nanocrystals enable new functionality in sensors, biomarkers, and catalysts while mechanisms o...
We investigated molecular interactions involved in the selective binding of several short peptides d...
Self-assembly and function of biologically modified metal nanostructures depend on surface-selective...
We investigated molecular interactions involved in the selective binding of several short peptides d...
We investigated molecular interactions involved in the selective binding of several short peptides d...
At the nanometer scale, the physical and chemical properties of materials heavily depend on their si...
International audienceUnderstanding the mechanism of biomolecules’ interaction with inorganic surfac...
Engineering shape-controlled bionanomaterials requires comprehensive understanding of interactions b...
Peptides with inorganic materials recognition already started to impact a wide range of surface- rel...
The adsorption mechanism of twenty amino acids and four surfactants was examined on a {111} surface ...
In examining adsorption of a few selected single amino acids on Au and Pd cluster models by density ...
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 ...
Surfactants with preferential adsorption to certain crystal facets have been widely employed to mani...
Metal nanocrystals enable new functionality in sensors, biomarkers, and catalysts while mechanisms o...
Metal nanocrystals enable new functionality in sensors, biomarkers, and catalysts while mechanisms o...
We investigated molecular interactions involved in the selective binding of several short peptides d...
Self-assembly and function of biologically modified metal nanostructures depend on surface-selective...
We investigated molecular interactions involved in the selective binding of several short peptides d...
We investigated molecular interactions involved in the selective binding of several short peptides d...
At the nanometer scale, the physical and chemical properties of materials heavily depend on their si...