none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of utmost importance to drive new technological advancements, particularly for condensation, aggregation, catalysis and exchange of biomolecules. The mineral surface can be used in several fields and applications, for instance in biotechnology, environmental science and remediation, soil science, agro-food and related technology. This kind of knowledge may also provide several suggestions and have implications also for the prebiotic chemistry field, namely the study of the abiotic physicochemical steps that could have led to the ‘creation’ of the first known living organism. Nowadays, this kind of information at the micro and nanometric scale ca...
The association of proteins and peptides with inorganic material has vast technological potential. A...
Sum frequency generation (SFG) vibrational spectroscopy, atomic force microscopy (AFM), and quartz c...
Biological organisms use biomolecules in combination with compartmentalization and ion sequestering ...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
In the present work, the interaction between simple oligopeptides of L-alanine (di-L-alanine) and th...
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 ...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
Interfaces between peptides and metallic surfaces are the subject of great interest for possible use...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
The availability of advanced nanotechnological methodologies (experimental and theoretical) has wi...
Self-assembly and function of biologically modified metal nanostructures depend on surface-selective...
Understanding the mechanisms of biomineralization and the realization of biology-inspired inorganic ...
Thesis (Ph.D.)--University of Washington, 2020Bio-inorganic interfaces, in which biomolecules intima...
The association of proteins and peptides with inorganic material has vast technological potential. A...
Sum frequency generation (SFG) vibrational spectroscopy, atomic force microscopy (AFM), and quartz c...
Biological organisms use biomolecules in combination with compartmentalization and ion sequestering ...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
In the present work, the interaction between simple oligopeptides of L-alanine (di-L-alanine) and th...
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 ...
In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a ...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
Interfaces between peptides and metallic surfaces are the subject of great interest for possible use...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
The availability of advanced nanotechnological methodologies (experimental and theoretical) has wi...
Self-assembly and function of biologically modified metal nanostructures depend on surface-selective...
Understanding the mechanisms of biomineralization and the realization of biology-inspired inorganic ...
Thesis (Ph.D.)--University of Washington, 2020Bio-inorganic interfaces, in which biomolecules intima...
The association of proteins and peptides with inorganic material has vast technological potential. A...
Sum frequency generation (SFG) vibrational spectroscopy, atomic force microscopy (AFM), and quartz c...
Biological organisms use biomolecules in combination with compartmentalization and ion sequestering ...