Layered aluminosilicates play a dominant role in the mechanical and gas storage properties of the subsurface, are used in diverse industrial applications, and serve as model materials for understanding solvent-ion-support systems. Although expansion in the presence of H2O is well-known to be systematically correlated with the hydration free energy of the interlayer cation, particularly in environments dominated by nonpolar solvents (i.e., CO2), uptake into the interlayer is not well-understood. Using novel high-pressure capabilities, we investigated the interaction of dry supercritical CO2 with Na-, NH4-, and Cs-saturated montmorillonite, comparing results with predictions from molecular dynamics simulations. Despite the known trend in H2O ...
The porosity of clay minerals is dominated by nanoscale pores that provide a large surface area for ...
Clay minerals abound in sedimentary formations and the interaction of reservoir gases with their sub...
Classical atomistic simulations are carried out to study carbon sequestration at deep underground fo...
Layered aluminosilicates play a dominant role in the mechanical and gas storage properties of the su...
International audienceIn situ XRD and NMR experiments combined with molecular dynamics simulations u...
Understanding the long-term confinement of supercritical fluids in the clay pores of subsurface rock...
Grand Canonical Molecular Dynamics (GCMD) simulations were performed to investigate the intercalati...
Interactions between supercritical (sc) CO2 and minerals are important when CO2 is injected into geo...
The carbon dioxide (CO<sub>2</sub>) retention capacity and adsorption/desorption energetics of layer...
Interactions between supercritical (sc) CO2 and minerals are important when CO2 is injected into geo...
The microscopic understanding of uptake and retention of supercritical carbon dioxide by expandable ...
Several strategies for mitigating the build-up of atmospheric carbon dioxide (CO2) bring wet supercr...
AbstractInjection of supercritical CO2 (scCO2) for the geologic storage of carbon dioxide will displ...
International audienceWe report a Monte Carlo and molecular dynamics simulations study of carbon dio...
The intercalation of nonaqueous fluids in the nanopores of organic and inorganic materials is of sig...
The porosity of clay minerals is dominated by nanoscale pores that provide a large surface area for ...
Clay minerals abound in sedimentary formations and the interaction of reservoir gases with their sub...
Classical atomistic simulations are carried out to study carbon sequestration at deep underground fo...
Layered aluminosilicates play a dominant role in the mechanical and gas storage properties of the su...
International audienceIn situ XRD and NMR experiments combined with molecular dynamics simulations u...
Understanding the long-term confinement of supercritical fluids in the clay pores of subsurface rock...
Grand Canonical Molecular Dynamics (GCMD) simulations were performed to investigate the intercalati...
Interactions between supercritical (sc) CO2 and minerals are important when CO2 is injected into geo...
The carbon dioxide (CO<sub>2</sub>) retention capacity and adsorption/desorption energetics of layer...
Interactions between supercritical (sc) CO2 and minerals are important when CO2 is injected into geo...
The microscopic understanding of uptake and retention of supercritical carbon dioxide by expandable ...
Several strategies for mitigating the build-up of atmospheric carbon dioxide (CO2) bring wet supercr...
AbstractInjection of supercritical CO2 (scCO2) for the geologic storage of carbon dioxide will displ...
International audienceWe report a Monte Carlo and molecular dynamics simulations study of carbon dio...
The intercalation of nonaqueous fluids in the nanopores of organic and inorganic materials is of sig...
The porosity of clay minerals is dominated by nanoscale pores that provide a large surface area for ...
Clay minerals abound in sedimentary formations and the interaction of reservoir gases with their sub...
Classical atomistic simulations are carried out to study carbon sequestration at deep underground fo...