Accurate prediction of fundamental properties such as melting points using direct physical simulation is challenging. Here, we investigate the melting point (T-m) of alkali halides that are often considered to be the simplest category of salts. Popular force fields that have been examined for this task leave considerable room for improvement. Recently we introduced a new force field for alkali halides (WBK) as part of the Alexandria project, featuring explicit polarisation and distributed charges. This new force field significantly improves the prediction of a large set of physicochemical properties and in this contribution we show that the same is valid for the prediction of T-m. For reference, we calculated T-m using a non-polarisable for...
444-447Melting curves representing the variations of melting temperature <i style="mso-bidi-font-st...
Melting temperatures of alkali halides have been calculated assuming that different structures of an...
In this work, we introduce a simulation-based method for predicting the melting point of ionic liqui...
A longstanding goal of computational chemistry is to predict the state of materials in all phases wi...
We used three sets of individual interaction potentials for alkali and halide ions. The first was th...
This paper presents a broad theoretical and simulation study of the high-temperature behavior of cry...
An experimental and theoretical study of premelting behaviour and mechanisms of melting in the alkal...
The current state-of-the-art force fields (FFs) for Na+ and Cl−ions are not capable of simultaneousl...
We examine the melting point trends across sets of coarse grain model salts using NPT molecular dyna...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We report a numerical calculation of the melting point of NaCl. The solid–liquid transition was loca...
NoWe report a numerical calculation of the melting point of NaCl. The solid-liquid transition was lo...
The lithium halide salts may at first appear to be simple chemical systems. However, previous resear...
Alkali halide (100) crystal surfaces are anomalous, being very poorly wetted by their own melt at th...
A melting criterion for binary ionic compounds is formulated in terms of an instability due to the o...
444-447Melting curves representing the variations of melting temperature <i style="mso-bidi-font-st...
Melting temperatures of alkali halides have been calculated assuming that different structures of an...
In this work, we introduce a simulation-based method for predicting the melting point of ionic liqui...
A longstanding goal of computational chemistry is to predict the state of materials in all phases wi...
We used three sets of individual interaction potentials for alkali and halide ions. The first was th...
This paper presents a broad theoretical and simulation study of the high-temperature behavior of cry...
An experimental and theoretical study of premelting behaviour and mechanisms of melting in the alkal...
The current state-of-the-art force fields (FFs) for Na+ and Cl−ions are not capable of simultaneousl...
We examine the melting point trends across sets of coarse grain model salts using NPT molecular dyna...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We report a numerical calculation of the melting point of NaCl. The solid–liquid transition was loca...
NoWe report a numerical calculation of the melting point of NaCl. The solid-liquid transition was lo...
The lithium halide salts may at first appear to be simple chemical systems. However, previous resear...
Alkali halide (100) crystal surfaces are anomalous, being very poorly wetted by their own melt at th...
A melting criterion for binary ionic compounds is formulated in terms of an instability due to the o...
444-447Melting curves representing the variations of melting temperature <i style="mso-bidi-font-st...
Melting temperatures of alkali halides have been calculated assuming that different structures of an...
In this work, we introduce a simulation-based method for predicting the melting point of ionic liqui...