High energy X-ray diffraction has been combined with containerless techniques to determine the structure of a series of alkali and ammonium nitrate and nitrite liquids. The systems have been modelled using molecular dynamics simulation which allows for the flexibility of, and movement of charge within, the molecular anions. The model reproduces the experimentally-determined scattering functions in both the low- and high-Q regimes reflecting the inter- and intra-molecular length-scales. For ammonium nitrate the best fit to the diffraction data is obtained by assuming the NH4+ cation to have a radius closer to that for Cs+ rather than a smaller cation such as Rb+ as often previously assumed. The alkali nitrites show an emergent length scale, ...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
In this study we have explored by means of polarizable molecular dynamics simulations and small-angl...
The structure of the concentrated liquid ammoniate for the compound NaI·3.3NH3 has been investigated...
High energy X-ray diffraction has been combined with containerless techniques to determine the struc...
In this article we report the study of liquid pentylammonium nitrate with Wide Angle X-ray scatterin...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
The structure of the concentrated liquid ammoniate for the compound NaI·3.3NH3 has been investigated...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
The structure of lithium-ammonia and lithium-ammonia-methylamine solutions has been studied using th...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
In this study we have explored by means of polarizable molecular dynamics simulations and small-angl...
The structure of the concentrated liquid ammoniate for the compound NaI·3.3NH3 has been investigated...
High energy X-ray diffraction has been combined with containerless techniques to determine the struc...
In this article we report the study of liquid pentylammonium nitrate with Wide Angle X-ray scatterin...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
In this study, we discuss the performance of classical molecular dynamics in predicting the experime...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
The structure of the concentrated liquid ammoniate for the compound NaI·3.3NH3 has been investigated...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
The structure of lithium-ammonia and lithium-ammonia-methylamine solutions has been studied using th...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
In this study we have explored by means of polarizable molecular dynamics simulations and small-angl...
The structure of the concentrated liquid ammoniate for the compound NaI·3.3NH3 has been investigated...