We investigated the hydration of the CuCl0 complex in HCl-bearing water vapor at 350°C and a vapor-like fluid density between 0.02 and 0.09 g/cm3 using ab initio molecular dynamics (MD) simulations. The simulations reveal that one water molecule is strongly bonded to Cu(I) (first coordination shell), forming a linear [H2O-Cu-Cl]0 moiety. The second hydration shell is highly dynamic in nature, and individual configurations have short life-spans in such low-density vapors, resulting in large fluctuations in instantaneous hydration numbers over a timescale of picoseconds. The average hydration number in the second shell (m) increased from ∼0.5 to ∼3.5 and the calculated number of hydrogen bonds per water molecule increased from0.09 to 0.25 whe...
Data for the solubility of CuS (reacting to Cu2S), Cu, and bornite + chalcopyrite + pyrite (reacting...
Small aqueous ionic clusters represent ideal systems to investigate the microscopic hydrogen-bond...
We determined the coordination environment of Zn2+ in aqueous Cl- brines at 25 °C and 300 °C using a...
We investigated the hydration of the CuCl0 complex in HCl-bearing water vapor at 350°C and a vapor-l...
Aqueous fluids are an important medium for transporting metals in the Earth’s crust, and are respons...
The Cu complex, which is the key chemical species in well-known Cu–Cl hybrid thermochemical cycles a...
The hydrated structure of the Cu(II) ion has been a subject of ongoing debate in the literature. In ...
The transport of copper is affected by complexing with ligands such as chloride, bisulphide and acet...
The hydration structure dynamics of Cu(II) ion is characterized by a combination of classical molecu...
Using density functional theory based ab initio molecular dynamics and metadynamics, we show that co...
We use density functional theory (B3LYP) and the COSMO continuum solvent model to characterize the s...
Understanding of the genesis of hydrothermal copper ore deposits requires robust knowledge of the tr...
HCl is one of the most significant volatiles in the Earth’s crust. It is well established that chlor...
The solubility of gold and copper chloride in liquid-undersaturated, HCl-bearing water vapour was i...
Clathrate hydrates consisting of HCFC (hydrochlorofluorocarbon) guest molecules within host water ca...
Data for the solubility of CuS (reacting to Cu2S), Cu, and bornite + chalcopyrite + pyrite (reacting...
Small aqueous ionic clusters represent ideal systems to investigate the microscopic hydrogen-bond...
We determined the coordination environment of Zn2+ in aqueous Cl- brines at 25 °C and 300 °C using a...
We investigated the hydration of the CuCl0 complex in HCl-bearing water vapor at 350°C and a vapor-l...
Aqueous fluids are an important medium for transporting metals in the Earth’s crust, and are respons...
The Cu complex, which is the key chemical species in well-known Cu–Cl hybrid thermochemical cycles a...
The hydrated structure of the Cu(II) ion has been a subject of ongoing debate in the literature. In ...
The transport of copper is affected by complexing with ligands such as chloride, bisulphide and acet...
The hydration structure dynamics of Cu(II) ion is characterized by a combination of classical molecu...
Using density functional theory based ab initio molecular dynamics and metadynamics, we show that co...
We use density functional theory (B3LYP) and the COSMO continuum solvent model to characterize the s...
Understanding of the genesis of hydrothermal copper ore deposits requires robust knowledge of the tr...
HCl is one of the most significant volatiles in the Earth’s crust. It is well established that chlor...
The solubility of gold and copper chloride in liquid-undersaturated, HCl-bearing water vapour was i...
Clathrate hydrates consisting of HCFC (hydrochlorofluorocarbon) guest molecules within host water ca...
Data for the solubility of CuS (reacting to Cu2S), Cu, and bornite + chalcopyrite + pyrite (reacting...
Small aqueous ionic clusters represent ideal systems to investigate the microscopic hydrogen-bond...
We determined the coordination environment of Zn2+ in aqueous Cl- brines at 25 °C and 300 °C using a...