Neutron diffraction experiments with hydrogen isotope substitution on aqueous solutions of HCl and HBr have been performed at concentrations ranging from 1:17 to 1:83 solute per water molecules, at ambient conditions. Data are analyzed using the empirical potential structure refinement technique in order to extract information on both the ion hydration shells and the microscopic structure of the solvent. It is found that the influence of these solutes on the water structure is less concentration dependent than that of salts or hydroxides. Moreover protons readily form a strong H-bond with a water molecule upon solvation, at all proportions. The majority of them is also bonded via a longer bond to another water molecule, giving a prepe...
The nature of water–anion bonding is examined using X-ray absorption fine structure spectroscopy on ...
Water dissolves salt into ions and then hydrates the ions to form an aqueous solution. Hydration of ...
Neutron diffraction coupled with hydrogen/deuterium isotopic substitution has been used to investiga...
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...
A neutron diffraction experiment with isotopic H/D substitution on four concentrated NaOH/H2O solut...
Neutron diffraction data with hydrogen isotope substitution on aqueous solutions of NaCl and KCl at ...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
The hydration structure in aqueous solutions of three tetraalkylammonium halides (TAAX), tetramethyl...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
Molecular dynamics simulations of dilute and concentrated aqueous NaCl solutions are carried out to ...
The ion induced modification to the tetrahedral structure of water is a topic of much current inter...
The presence of ions and/or apolar species in water provides a rich and varied environment in which ...
The presence of ions in water provides a rich and varied environment in which many natural processes...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
The nature of water–anion bonding is examined using X-ray absorption fine structure spectroscopy on ...
Water dissolves salt into ions and then hydrates the ions to form an aqueous solution. Hydration of ...
Neutron diffraction coupled with hydrogen/deuterium isotopic substitution has been used to investiga...
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...
A neutron diffraction experiment with isotopic H/D substitution on four concentrated NaOH/H2O solut...
Neutron diffraction data with hydrogen isotope substitution on aqueous solutions of NaCl and KCl at ...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
The hydration structure in aqueous solutions of three tetraalkylammonium halides (TAAX), tetramethyl...
Neutron diffraction with isotopic substitution has been used to investigate aqueous solutions of 2M ...
Molecular dynamics simulations of dilute and concentrated aqueous NaCl solutions are carried out to ...
The ion induced modification to the tetrahedral structure of water is a topic of much current inter...
The presence of ions and/or apolar species in water provides a rich and varied environment in which ...
The presence of ions in water provides a rich and varied environment in which many natural processes...
A combination of neutron diffraction augmented with isotopic substitution and computer modeling usin...
The nature of water–anion bonding is examined using X-ray absorption fine structure spectroscopy on ...
Water dissolves salt into ions and then hydrates the ions to form an aqueous solution. Hydration of ...
Neutron diffraction coupled with hydrogen/deuterium isotopic substitution has been used to investiga...