Titanium is commonly employed in orthopaedic and dental surgery, owing to its good mechanical properties. The titanium metal is usually passivated by a thin layer of its oxide, and in order to promote its integration with the biological tissue, it is covered by a bioactive material such as calcium phosphate (CaP). Here, we have investigated the deposition of calcium and phosphate species on the anatase phase of titanium dioxide (TiO2) using interatomic potential-based molecular dynamics simulations. We have combined different force fields developed for CaP, TiO2, and water, benchmarking the results against density functional theory calculations. On the basis of our study, we consider that the new parameters can be used successfully to study...
Chemical doping and other surface modifications have been used to engineer the bulk properties of ma...
The focus of this research is to determine a mathematical model for the osseointegration process of ...
perform DFT calculations within the COSMO framework to study the adsorption properties of the CaHPOx...
Titanium is commonly employed in orthopaedic and dental surgery, owing to its good mechanical proper...
Titanium is commonly employed in orthopaedic and dental surgery, owing to its good mechanical proper...
Nucleation and biomineralization of apatite on titanium-based material surfaces is crucial to improv...
The deposition of calcium ions is the first and most crucial step of apatite nucleation on ceramic s...
The deposition of calcium ions is the first and most crucial step of apatite nucleation on ceramic s...
Given the potential of Titanium Dioxide as a source of alternative energy, drug delivery, protein a...
Calcium phosphates (CaPs) composites with different TiO2 nanomaterials (TiNMs) have recently attract...
In order to investigate the surface properties of metals in a realistic fashion it is crucial to tak...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
The interface between titanium dioxide and biological solution is relevant for the bioactivity of ti...
International audienceChemical doping and other surface modifications have been used to engineer the...
Titanium and its alloys have been extensively used for orthopedic and dental applications for their ...
Chemical doping and other surface modifications have been used to engineer the bulk properties of ma...
The focus of this research is to determine a mathematical model for the osseointegration process of ...
perform DFT calculations within the COSMO framework to study the adsorption properties of the CaHPOx...
Titanium is commonly employed in orthopaedic and dental surgery, owing to its good mechanical proper...
Titanium is commonly employed in orthopaedic and dental surgery, owing to its good mechanical proper...
Nucleation and biomineralization of apatite on titanium-based material surfaces is crucial to improv...
The deposition of calcium ions is the first and most crucial step of apatite nucleation on ceramic s...
The deposition of calcium ions is the first and most crucial step of apatite nucleation on ceramic s...
Given the potential of Titanium Dioxide as a source of alternative energy, drug delivery, protein a...
Calcium phosphates (CaPs) composites with different TiO2 nanomaterials (TiNMs) have recently attract...
In order to investigate the surface properties of metals in a realistic fashion it is crucial to tak...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
The interface between titanium dioxide and biological solution is relevant for the bioactivity of ti...
International audienceChemical doping and other surface modifications have been used to engineer the...
Titanium and its alloys have been extensively used for orthopedic and dental applications for their ...
Chemical doping and other surface modifications have been used to engineer the bulk properties of ma...
The focus of this research is to determine a mathematical model for the osseointegration process of ...
perform DFT calculations within the COSMO framework to study the adsorption properties of the CaHPOx...