The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and penta-Gly, with a natural pyrite surface was directly measured using the force mode of an atomic force microscope (AFM). In recent years, selective activation of abiotically formed amino acids on mineral surfaces, especially that of pyrite, has been proposed as an important step in many origins of life scenarios. To investigate such notions, we used AFM-based force measurements to probe possible non-covalent interactions between pyrite and amino acids, starting from the simplest amino acid, Gly. Although Gly itself interacted with the pyrite surface only weakly, progressively larger unbinding forces and binding frequencies were obtained using ...
The adsorption by chemical vapor deposition of glycine to nanohydroxyapatite, well characterized by ...
In the present work, the interaction between simple oligopeptides of L-alanine (di-L-alanine) and th...
This thesis reports on the adsorption of two amino acids (AA) with different properties, Leucine and...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
For technological purposes there is an urge towards the fundamental knowledge of biomolecules-clay i...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
This article describes single-molecule force spectroscopy measurements of the interaction between in...
Abstract Surface force analysis with atomic force microscope (AFM) in which a single amino acid resi...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
Glycine at the interface of a pyrite surface (001) FeS2, and bulk water at high pressure and tempera...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
Owing to their chemical and magnetic properties, magnetite nanoparticles are an interesting adsorbin...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
The interaction between low-molecular weight organic compounds and pyrite under anoxic conditions h...
The adsorption by chemical vapor deposition of glycine to nanohydroxyapatite, well characterized by ...
In the present work, the interaction between simple oligopeptides of L-alanine (di-L-alanine) and th...
This thesis reports on the adsorption of two amino acids (AA) with different properties, Leucine and...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
For technological purposes there is an urge towards the fundamental knowledge of biomolecules-clay i...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
This article describes single-molecule force spectroscopy measurements of the interaction between in...
Abstract Surface force analysis with atomic force microscope (AFM) in which a single amino acid resi...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
Glycine at the interface of a pyrite surface (001) FeS2, and bulk water at high pressure and tempera...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
Owing to their chemical and magnetic properties, magnetite nanoparticles are an interesting adsorbin...
Biomolecules in a confined solution environment may be subject to electrostatic forces with a range ...
The interaction between low-molecular weight organic compounds and pyrite under anoxic conditions h...
The adsorption by chemical vapor deposition of glycine to nanohydroxyapatite, well characterized by ...
In the present work, the interaction between simple oligopeptides of L-alanine (di-L-alanine) and th...
This thesis reports on the adsorption of two amino acids (AA) with different properties, Leucine and...