We have characterized the structure and picosecond dynamics of the hydrogen bond network of solvated LiI by means of first-principles molecular dynamics simulations at ambient temperature. Our calculations reveal the qualitative differences of the network between low (1 M) and high (9 M) salt concentrations. In particular, we find the presence of fused Li+ solvation shells at 9 M, meaning that a single water molecule is coordinated to two different Li+ ions. This results in the formation of (Li+center dot H2O)(n) chains, dominating over conventional ion pairing. We report experimental and simulated NMR chemical shifts, which indicate a weakening of the hydrogen bond network, mainly within the first solvation shell of the I- ions. In line wi...
Iodide-based redox mediation in Li–O2 batteries is regarded as a promising system due to its relativ...
Molecular dynamics (MD) simulations, density functional theory (DFT) calculations, and 1H NMR spectr...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
We have characterized the structure and picosecond dynamics of the hydrogen bond network of solvated...
.How salts affect water structure is an important topic in many research fields. Salt-water clusters...
A stochastic exploration of the quantum conformational space for the (H2O)nLi+, n = 3, 4, 5 complexe...
.How salts affect water structure is an important topic in many research fields. Salt-water clusters...
Small aqueous ionic clusters represent ideal systems to investigate the microscopic hydrogen-bond...
<p>In this work, the ionic solvation and association behaviours in the LiCl aqueous solution were in...
International audienceHighly concentrated electrolytes (HCEs) are attracting interest as safer and m...
In order to understand the microsolvation of LiI and CsI in water and provide information about the ...
In this study we present the results of a first principles molecular dynamics simulation of a single...
This investigation uses a recent methodology, essentially based on our evolutionary algorithm (EA) t...
In order to understand the microsolvation of LiI and CsI in water and provide information about the ...
We investigate using molecular dynamics simulations the dynamical and structural properties of LiCl:...
Iodide-based redox mediation in Li–O2 batteries is regarded as a promising system due to its relativ...
Molecular dynamics (MD) simulations, density functional theory (DFT) calculations, and 1H NMR spectr...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
We have characterized the structure and picosecond dynamics of the hydrogen bond network of solvated...
.How salts affect water structure is an important topic in many research fields. Salt-water clusters...
A stochastic exploration of the quantum conformational space for the (H2O)nLi+, n = 3, 4, 5 complexe...
.How salts affect water structure is an important topic in many research fields. Salt-water clusters...
Small aqueous ionic clusters represent ideal systems to investigate the microscopic hydrogen-bond...
<p>In this work, the ionic solvation and association behaviours in the LiCl aqueous solution were in...
International audienceHighly concentrated electrolytes (HCEs) are attracting interest as safer and m...
In order to understand the microsolvation of LiI and CsI in water and provide information about the ...
In this study we present the results of a first principles molecular dynamics simulation of a single...
This investigation uses a recent methodology, essentially based on our evolutionary algorithm (EA) t...
In order to understand the microsolvation of LiI and CsI in water and provide information about the ...
We investigate using molecular dynamics simulations the dynamical and structural properties of LiCl:...
Iodide-based redox mediation in Li–O2 batteries is regarded as a promising system due to its relativ...
Molecular dynamics (MD) simulations, density functional theory (DFT) calculations, and 1H NMR spectr...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...