The adsorption by chemical vapor deposition of glycine to nanohydroxyapatite, well characterized by electron microscopy, has been studied by infrared spectroscopy and density functional theory based on the B3LYP functional. The comparison of the IR features of the adsorbed glycine with that resulting from the modeling has allowed elucidating the structures assumed by glycine at the crystalline faces of nanohydroxyapatite. These results will improve the understanding of the biomolecules/biomaterials interactions
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...
As a widely existing mineral types on Earth, semiconductor minerals play an important role in the or...
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...
The adsorption of glycine on the Ca-rich and P-rich HA(010) nonstoichiometric surfaces has been stud...
The adsorption of CO at hydroxyapatite (HA) surfaces has been studied by combining quantum mechanica...
The adsorption from gas-phase of five different amino acids (AA), namely Gly, Ser, Lys...
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 affinity of the (001) and of the water reacted (010)WR hydroxyapatite surfaces towards formic an...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
Density functional theory calculations implemented by the SIESTA code are used to study the interact...
The chemisorption of glycine (NH2CH2COOH) and its fully deuterated analogue d(5)-glycine, vacuum dep...
Ar ion sputtering on pyrite surfaces leads to the generation of sulfur vacancies and metallic iron. ...
Density functional theory calculations have been used to study the adsorption of glycine, alanine, s...
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...
As a widely existing mineral types on Earth, semiconductor minerals play an important role in the or...
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...
The adsorption of glycine on the Ca-rich and P-rich HA(010) nonstoichiometric surfaces has been stud...
The adsorption of CO at hydroxyapatite (HA) surfaces has been studied by combining quantum mechanica...
The adsorption from gas-phase of five different amino acids (AA), namely Gly, Ser, Lys...
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 affinity of the (001) and of the water reacted (010)WR hydroxyapatite surfaces towards formic an...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
Density functional theory calculations implemented by the SIESTA code are used to study the interact...
The chemisorption of glycine (NH2CH2COOH) and its fully deuterated analogue d(5)-glycine, vacuum dep...
Ar ion sputtering on pyrite surfaces leads to the generation of sulfur vacancies and metallic iron. ...
Density functional theory calculations have been used to study the adsorption of glycine, alanine, s...
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...
As a widely existing mineral types on Earth, semiconductor minerals play an important role in the or...
Biocompatible inorganic nano- and microcarriers can be suitable candidates for protein delivery. Thi...