Density functional molecular dynamics simulations have been performed in the NVT ensemble (moles (N), volume (V) and temperature (T)) on a system formed by ten acetone molecules at a temperature of 2000 K and density ρ = 1.322 g cm−3 . These conditions resemble closely those realized at the interface of an acetone vapor bubble in the early stages of supercompression experiments and result in an average pressure of 5 GPa. Two relevant reactive events occur during the simulation: the condensation of two acetone molecules to give hexane-2,5-dione and dihydrogen and the isomerization to the enolic propen-2-ol form. The mechanisms of these events are discussed in detail
The dissociation dynamics of two acetone isotopomers ([D_0]- and [D_6]acetone) after 93 kcal mol^(−1...
The photophysics of vapor and liquid acetone are experimentally examined from subcritical to supercr...
Background: Acetone is present in the earth´s atmosphere and extra-terrestrially. The knowledge of i...
Density functional molecular dynamics simulations have been performed in the NVT ensemble (moles (N)...
Molecular dynamics simulations, employing the transferable potentials for phase equilibria-united at...
Monte Carlo simulation results for pure liquid acetone and water-acetone mixtures calculated in the ...
Molecular dynamics simulations of the liquid-vapor interface of acetone-water mixtures of different ...
We have studied the keto-enol interconversion of acetone to understand the mechanism of tautomerism ...
Molecular dynamics simulation studies have been performed for a series of polar mixtures of acetone ...
Hydrogen bond interactions between acetone and supercritical water are investigated using a combined...
A molecular dynamics study of binary mixtures with acetone and different non-polar solutes (benzene,...
The ultraviolet spectrum of acetone in vacuum and in aqueous solution has been computed by different...
It is well-known that classical molecular dynamics simulations of acetone–water mixtures lead to a s...
Vapor–liquid equilibria (VLE) of the binary mixtures nitrogen + acetone and oxygen + acetone are stu...
The potential energy surfaces of the C-O cleavage, rotational isomerization, keto-enolic tautomeriza...
The dissociation dynamics of two acetone isotopomers ([D_0]- and [D_6]acetone) after 93 kcal mol^(−1...
The photophysics of vapor and liquid acetone are experimentally examined from subcritical to supercr...
Background: Acetone is present in the earth´s atmosphere and extra-terrestrially. The knowledge of i...
Density functional molecular dynamics simulations have been performed in the NVT ensemble (moles (N)...
Molecular dynamics simulations, employing the transferable potentials for phase equilibria-united at...
Monte Carlo simulation results for pure liquid acetone and water-acetone mixtures calculated in the ...
Molecular dynamics simulations of the liquid-vapor interface of acetone-water mixtures of different ...
We have studied the keto-enol interconversion of acetone to understand the mechanism of tautomerism ...
Molecular dynamics simulation studies have been performed for a series of polar mixtures of acetone ...
Hydrogen bond interactions between acetone and supercritical water are investigated using a combined...
A molecular dynamics study of binary mixtures with acetone and different non-polar solutes (benzene,...
The ultraviolet spectrum of acetone in vacuum and in aqueous solution has been computed by different...
It is well-known that classical molecular dynamics simulations of acetone–water mixtures lead to a s...
Vapor–liquid equilibria (VLE) of the binary mixtures nitrogen + acetone and oxygen + acetone are stu...
The potential energy surfaces of the C-O cleavage, rotational isomerization, keto-enolic tautomeriza...
The dissociation dynamics of two acetone isotopomers ([D_0]- and [D_6]acetone) after 93 kcal mol^(−1...
The photophysics of vapor and liquid acetone are experimentally examined from subcritical to supercr...
Background: Acetone is present in the earth´s atmosphere and extra-terrestrially. The knowledge of i...