The freezing behavior of water confined in compacted charged and uncharged clays (montmorillonite in Na-and Ca-forms, illite in Na-and Ca-forms, kaolinite and pyrophyllite) was investigated by neutron scattering. Firstly, the amount of frozen (immobile) water was measured as a function of temperature at the IN16 backscattering spectrometer, Institute Laue-Langevin (ILL). Water in uncharged, partly hydrophobic (kaolinite) and fully hydrophobic (pyrophyllite) clays exhibited a similar freezing and melting behavior to that of bulk water. In contrast, water in charged clays which are hydrophilic could be significantly supercooled. To observe the water dynamics in these clays, further experiments were performed using quasielastic neutron scatter...
The capacity of clay minerals to store large amounts of water is utilized in a number of industrial ...
Abstract--The use of neutron diffraction to determine some of the structural properties ofmontmorill...
PARIS-BIUSJ-Thèses (751052125) / SudocPARIS-BIUSJ-Physique recherche (751052113) / SudocSudocFranceF
It has long been realized that cations play a critical role in the readsorption of water into the in...
The translational diffusion of water in compacted clays at a high hydration level has been investiga...
The multiple energy states of water held by surfaces of a clay mineral can be effectively probed wit...
The multiple energy states of water held by surfaces of a clay mineral can be effectively probed wit...
Abstract--The diffusion of water in Li-montmorillonite was studied by incoherent quasielastic neutro...
10 pagesThe dynamics of water in porous charged media (montmorillonite clay) is investigated on the ...
Montmorillonite clays in low hydration states, with Na+ and Cs+ compensating counterions, are invest...
We report on results of quasi-elastic neutron scattering and dielectric spectroscopy of a mono-layer...
The translational diffusion of water in compacted clays at a high hydration level has been investiga...
Abstract The diffusion of water in the title intercalate has been measured by quasielastic neutron s...
Dynamical structure of the first water layer on clay has been investigated by quasielastic neutron s...
International audienceUsing a minimal model approach for interpreting the intermediate scattering fu...
The capacity of clay minerals to store large amounts of water is utilized in a number of industrial ...
Abstract--The use of neutron diffraction to determine some of the structural properties ofmontmorill...
PARIS-BIUSJ-Thèses (751052125) / SudocPARIS-BIUSJ-Physique recherche (751052113) / SudocSudocFranceF
It has long been realized that cations play a critical role in the readsorption of water into the in...
The translational diffusion of water in compacted clays at a high hydration level has been investiga...
The multiple energy states of water held by surfaces of a clay mineral can be effectively probed wit...
The multiple energy states of water held by surfaces of a clay mineral can be effectively probed wit...
Abstract--The diffusion of water in Li-montmorillonite was studied by incoherent quasielastic neutro...
10 pagesThe dynamics of water in porous charged media (montmorillonite clay) is investigated on the ...
Montmorillonite clays in low hydration states, with Na+ and Cs+ compensating counterions, are invest...
We report on results of quasi-elastic neutron scattering and dielectric spectroscopy of a mono-layer...
The translational diffusion of water in compacted clays at a high hydration level has been investiga...
Abstract The diffusion of water in the title intercalate has been measured by quasielastic neutron s...
Dynamical structure of the first water layer on clay has been investigated by quasielastic neutron s...
International audienceUsing a minimal model approach for interpreting the intermediate scattering fu...
The capacity of clay minerals to store large amounts of water is utilized in a number of industrial ...
Abstract--The use of neutron diffraction to determine some of the structural properties ofmontmorill...
PARIS-BIUSJ-Thèses (751052125) / SudocPARIS-BIUSJ-Physique recherche (751052113) / SudocSudocFranceF