Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body fluids from amorphous calcium phosphate (ACP). ACP presents short-range order in the form of small domains with size of 0.9 nm and chemical formula Ca9(PO4)6, known as Posner's clusters. In this study, the aggregation and clustering of calcium and phosphate ions in water has been investigated by means of shell-model molecular dynamics simulations. Calcium phosphate aggregates form in solution with compositions and Ca coordination that are similar to those found in Posner's cluster, but the stoichiometry of these species is dependent on the ionic composition of the solution: calcium-deficient clusters in solutions with low Ca:P ratio; cluster c...
Amorphous calcium phosphate often forms as a precursor phase in a solution at sufficiently high supe...
This work is dedicated to the study of the early stages of hydroxyapatite formation, a calcium phosp...
Unravelling the processes of calcium phosphate formation is important in our understanding of both b...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
© 2019 American Chemical Society. Classical molecular dynamics simulations and free energy methods h...
Calcium phosphate is the main mineral phase within our bodies, but despite many studies there is not...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Copyright © 2019 American Chemical Society. Calcium orthophosphates (CaPs) are the hard constituents...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
For decades, hydroxyapatite has been considered the main mineral phase of mammalian tooth enamel and...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
Calcium orthophosphates (CaPs) are the hard constituents of bones and teeth, and thus of ultimate im...
Despite its importance in many industrial, geological and biological processes, the mechanism of cry...
Amorphous calcium phosphate often forms as a precursor phase in a solution at sufficiently high supe...
This work is dedicated to the study of the early stages of hydroxyapatite formation, a calcium phosp...
Unravelling the processes of calcium phosphate formation is important in our understanding of both b...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
© 2019 American Chemical Society. Classical molecular dynamics simulations and free energy methods h...
Calcium phosphate is the main mineral phase within our bodies, but despite many studies there is not...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Copyright © 2019 American Chemical Society. Calcium orthophosphates (CaPs) are the hard constituents...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
For decades, hydroxyapatite has been considered the main mineral phase of mammalian tooth enamel and...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
Calcium orthophosphates (CaPs) are the hard constituents of bones and teeth, and thus of ultimate im...
Despite its importance in many industrial, geological and biological processes, the mechanism of cry...
Amorphous calcium phosphate often forms as a precursor phase in a solution at sufficiently high supe...
This work is dedicated to the study of the early stages of hydroxyapatite formation, a calcium phosp...
Unravelling the processes of calcium phosphate formation is important in our understanding of both b...