Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. However, as a side reaction to dehydration, hydrolysis (HCl formation) may occur in chloride based salt hydrates (specially in MgCl2 hydrates), affecting the durability of the storage system. The mixture of CaCl2 and MgCl2 hydrates has been shown experimentally to have exceptional cycle stability and improved kinetics. However, the optimal operating conditions for the mixture are unknown. To understand the appropriate balance between dehydration and hydrolysis kinetics in the mixtures, it is essential to gain in-depth insight into the mixture components. We present a GGA-DFT level study to investigate the various gaseous structures of CaCl2 hy...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
Solar energy is one of the important pillar of renewable energy systems. The main challenge in explo...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Chloride based salt hydrates are promising materials for seasonal heat storage. However, hydrolysis,...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
Solar energy is one of the important pillar of renewable energy systems. The main challenge in explo...
Salt hydrates store solar energy in chemical form via a reversible dehydration–hydration reaction. H...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Chloride-based salt hydrates form a promising class of thermochemical materials (TCMs), having high ...
Magnesium chloride hydrates are characterized as promising energy storage materials in the builtenvi...
Chloride based salt hydrates are promising materials for seasonal heat storage. However, hydrolysis,...
\u3cp\u3eChloride-based salt hydrates form a promising class of thermochemical materials (TCMs), hav...
In order to move towards a sustainable energy economy, a reliable energy storage technology is neces...
MgCl2 hydrates are considered as high-potential candidates for seasonal heat storage materials. Thes...
Mixed salt hydrates recently proved to be promising potential candidates for long-term heat storage....
Chloride-based salt hydrates, MgCl2·nH2O and CaCl2·nH2O (n = 0,1,2,4,6), are promising materials for...
Solar energy is one of the important pillar of renewable energy systems. The main challenge in explo...