International audienceControlling the evolution of morphology and properties during the precipitation of mesoporous materials is a key technological challenge. This entails the scientific challenge of modeling and simulating complex mesoscale kinetics. We present an original off-lattice Kinetic Monte Carlo approach to simulate various precipitation mechanisms at the mesoscale of nanoparticle aggregates. The simulations are based on novel coarse-grained rate expressions of nanopartice precipitation/dissolution, accounting for both solution chemistry and mechanical interactions. The precipitation of ordered and amorphous domains is simulated, showing how particle–particle and particle–substrate interactions determine various mechanisms: layer...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...
One important unresolved question in reactive transport is how pore-scale processes can be upscaled ...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...
International audienceControlling the evolution of morphology and properties during the precipitatio...
Controlling the evolution of morphology and properties during the precipitation of mesoporous materi...
International audienceHypothesis: Despite its importance in numerous industrial and natural processe...
Cement paste is the most widely used artificial material on Earth, causing massive CO2 emissions. To...
AbstractBy accounting for realistic interparticle interaction energy of fine dry nanoparticles, an o...
International audienceSeed-mediated methods are widely used in industrial or academic laboratories f...
AbstractNanoparticle precipitation is an interesting process to generate particles with tailored pro...
The long-term performance of new cementitious materials is uncertain. To help predict durability and...
Precipitation involving mixing of two sets of reverse micellar solutions - containing a reactant and...
Precipitation is a process wherein a solid phase forms from a solution. Precipitation is at the hear...
ABSTRACT: Calcium phosphate crystallization is of importance in medicine and materials science, and ...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...
One important unresolved question in reactive transport is how pore-scale processes can be upscaled ...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...
International audienceControlling the evolution of morphology and properties during the precipitatio...
Controlling the evolution of morphology and properties during the precipitation of mesoporous materi...
International audienceHypothesis: Despite its importance in numerous industrial and natural processe...
Cement paste is the most widely used artificial material on Earth, causing massive CO2 emissions. To...
AbstractBy accounting for realistic interparticle interaction energy of fine dry nanoparticles, an o...
International audienceSeed-mediated methods are widely used in industrial or academic laboratories f...
AbstractNanoparticle precipitation is an interesting process to generate particles with tailored pro...
The long-term performance of new cementitious materials is uncertain. To help predict durability and...
Precipitation involving mixing of two sets of reverse micellar solutions - containing a reactant and...
Precipitation is a process wherein a solid phase forms from a solution. Precipitation is at the hear...
ABSTRACT: Calcium phosphate crystallization is of importance in medicine and materials science, and ...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...
One important unresolved question in reactive transport is how pore-scale processes can be upscaled ...
A kinetic Monte Carlo framework is employed to simulate dissolution at the site of screw dislocation...