Using first-principles molecular-dynamics simulations, probable inner-sphere complexes of Fe2+ adsorbed on the edge surfaces of clay minerals were investigated. Ferrous ions are important reductants in natural processes and their properties can be altered significantly by complexation on edge surfaces of clay minerals. However, the microscopic picture of adsorption sites and structures of Fe2+ is difficult to reveal with modern experimental techniques and, therefore, remains unclear. From the results of first-principles molecular-dynamics simulations, evidence has been provided that complexes on ≡Si-O sites were the most stable forms, which should be responsible for the experimentally observed pH-dependent uptake. Such complexation was foun...
none3noMontmorillonite is one of the principal mineralogical phases in clay minerals, where its inte...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
Buckminsterfullerene (C-60) is one of the most important carbon-based nanoparticles (CNPs). Industri...
Abstract—Using first-principles molecular-dynamics simulations, probable inner-sphere complexes of F...
Using first-principles molecular-dynamics simulations, probable inner-sphere complexes of Fe adsorbe...
Aiming at an atomistic mechanism of heavy metal cation complexing on clay surfaces, we carried out s...
International audienceSystematic first-principles molecular dynamics (FPMD) simulations were carried...
Clay minerals, which are prevalent gangue minerals, are found in tailings and beneficiation effluent...
International audienceClay minerals retain or adsorb metal ions in the Earth’s critical zone. Rocks,...
International audienceThe Callovo-Oxfordian clay formation (COx) is the potential host rock for long...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
Clay minerals are efficient sinks for heavy metals in the geosphere. Knowing the uptake mechanism of...
Adsorption of metal cations on mineral surfaces often controls their distribution in both natural an...
Atomistic simulations provide insight into the crystal structure of minerals, surfaces, and mineral-...
Acid-base chemistry of clay minerals is central to their interfacial properties, but up to now a qua...
none3noMontmorillonite is one of the principal mineralogical phases in clay minerals, where its inte...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
Buckminsterfullerene (C-60) is one of the most important carbon-based nanoparticles (CNPs). Industri...
Abstract—Using first-principles molecular-dynamics simulations, probable inner-sphere complexes of F...
Using first-principles molecular-dynamics simulations, probable inner-sphere complexes of Fe adsorbe...
Aiming at an atomistic mechanism of heavy metal cation complexing on clay surfaces, we carried out s...
International audienceSystematic first-principles molecular dynamics (FPMD) simulations were carried...
Clay minerals, which are prevalent gangue minerals, are found in tailings and beneficiation effluent...
International audienceClay minerals retain or adsorb metal ions in the Earth’s critical zone. Rocks,...
International audienceThe Callovo-Oxfordian clay formation (COx) is the potential host rock for long...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
Clay minerals are efficient sinks for heavy metals in the geosphere. Knowing the uptake mechanism of...
Adsorption of metal cations on mineral surfaces often controls their distribution in both natural an...
Atomistic simulations provide insight into the crystal structure of minerals, surfaces, and mineral-...
Acid-base chemistry of clay minerals is central to their interfacial properties, but up to now a qua...
none3noMontmorillonite is one of the principal mineralogical phases in clay minerals, where its inte...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
Buckminsterfullerene (C-60) is one of the most important carbon-based nanoparticles (CNPs). Industri...