In this study, we discuss the performance of classical molecular dynamics in predicting the experimental X-ray diffraction patterns of liquid ethylammonium nitrate (one of the simplest protic room-temperature ionic liquid showing amphiphilic behavior) and of its hydroxy derivative (2-ethanolammonium nitrate, 2-HOEAN). Newly recorded energy-dispersive X-ray diffraction structure factors are compared with the corresponding quantities extracted from molecular dynamics simulations. Other useful theoretical and experimental indicators are used as a probe of the local structure of the title ionic liquids. We shall show that the use of a general purpose, two-body terms only, force field, such as OPLS/AA is able to describe most of the structural e...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
We present a study by energy-dispersive X-ray diffraction of liquid 2-(2-hydroxyethoxy) ethan-1ammon...
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...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
Ionic Liquids (ILs) have received considerable attention in recent years due to their potential as a...
In this chapter we will review the capabilities of X-Ray diffraction experiments in the field of ion...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
We present a study by energy-dispersive X-ray diffraction of liquid 2-(2-hydroxyethoxy) ethan-1ammon...
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...
This study reports the performance of classical molecular dynamics (MD) in predicting the X-ray diff...
Ionic Liquids (ILs) have received considerable attention in recent years due to their potential as a...
In this chapter we will review the capabilities of X-Ray diffraction experiments in the field of ion...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffract...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
In this study, we discuss, using molecular dynamics simulations and energy-dispersive x-ray diffrac...
We present a study by energy-dispersive X-ray diffraction of liquid 2-(2-hydroxyethoxy) ethan-1ammon...