Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M NaOH in the liquid state. The data were modeled using empirical potential structure refinement which allows for the extraction of the ion-water and water-water correlations. The data show that the ion-water radial distribution functions are in accordance with those found by previous studies on NaOH solutions and follow a trend which is dependent on the concentration of the solute. In particular, the shape of the hydroxide hydration shell is found to be concentration independent, but the number of water molecules occupying this shell increases with dilution. Additionally, the water-water correlations show that there is still a measurable effec...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
Abstract- Much of our information on ion—water interaction has been inferred from macroscopic thermo...
The ability to probe the structure of a salt solution at the atomic scale is fundamentally important...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
A neutron diffraction experiment with isotopic H/D substitution on four concentrated NaOH/H2O solut...
Neutron diffraction experiments with hydrogen isotope substitution on aqueous solutions of HCl and H...
Neutron diffraction experiments with hydrogen isotope substitution onaqueous solutions of HCl and HB...
The ion induced modification to the tetrahedral structure of water is a topic of much current inter...
Neutron diffraction data with hydrogen isotope substitution on aqueous solutions of NaCl and KCl at ...
Neutron scattering techniques were used to study aspects of the static, or equilibrium, structure at...
The presence of ions in water provides a rich and varied environment in which many natural processes...
Abstract- The structural properties of several aqua ions in solution have been determined by neutron...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
The presence of ions and/or apolar species in water provides a rich and varied environment in which ...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
Abstract- Much of our information on ion—water interaction has been inferred from macroscopic thermo...
The ability to probe the structure of a salt solution at the atomic scale is fundamentally important...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
A neutron diffraction experiment with isotopic H/D substitution on four concentrated NaOH/H2O solut...
Neutron diffraction experiments with hydrogen isotope substitution on aqueous solutions of HCl and H...
Neutron diffraction experiments with hydrogen isotope substitution onaqueous solutions of HCl and HB...
The ion induced modification to the tetrahedral structure of water is a topic of much current inter...
Neutron diffraction data with hydrogen isotope substitution on aqueous solutions of NaCl and KCl at ...
Neutron scattering techniques were used to study aspects of the static, or equilibrium, structure at...
The presence of ions in water provides a rich and varied environment in which many natural processes...
Abstract- The structural properties of several aqua ions in solution have been determined by neutron...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
The presence of ions and/or apolar species in water provides a rich and varied environment in which ...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
Abstract- Much of our information on ion—water interaction has been inferred from macroscopic thermo...
The ability to probe the structure of a salt solution at the atomic scale is fundamentally important...