We performed ab initio quantum-chemical studies for the development of intra- and intermolecular interaction potentials for formic acid for use in molecular-dynamics simulations of formic acid molecular crystal. The formic acid structures considered in the ab initio studies include both the cis and trans monomers which are the conformers that have been postulated as part of chains constituting liquid and crystal phases under extreme conditions. Although the cis to trans transformation is not energetically favored, the trans isomer was found as a component of stable gas-phase species. Our decomposition scheme for the interaction energy indicates that the hydrogen-bonded complexes are dominated by the Hartree-Fock forces while parallel cluste...
To find the set of minima in hydrogen bonded and weakly interacting complexes is often a difficult t...
Transition state structures, activation energies, and the intrinsic reaction coordinate (IRC) for th...
By both the EHT and the CNDO/2 calculations, the linear dimer of methanol is found to be more stable...
We performed ab initio quantum chemical studies for the development of intra and intermolecular inte...
A new molecular model for formic acid is proposed which favorably describes vapor-liquid equilibrium...
Ab initio molecular dynamics simulations of formic acid (FA) dimer colliding with liquid water at 30...
We have performed quantum mechanical calculations to study the geometries and binding energies of bi...
Double proton transfers in formic acid dimer and formamidine dimer were studied as prototypes of mul...
Quantum and classical molecular dynamics simulations are used to explore whether chemical reactivity...
We report on the first experimental observation of formic acid dimers composed of two molecules of t...
The hydrogen-bonded dimers of formic acid derivatives XCOOH (X = H, F, Cl, and CH3) have been invest...
calculation Abstract: This article reports Raman and infrared spectroscopy and density functional th...
The deprotonation of formic acid is investigated using metadynamics in tandem with Born-Oppenheimer ...
The deprotonation of formic acid is investigated using metadynamics in tandem with Born-Oppenheimer ...
To find the set of minima in hydrogen bonded and weakly interacting complexes is often a difficult t...
To find the set of minima in hydrogen bonded and weakly interacting complexes is often a difficult t...
Transition state structures, activation energies, and the intrinsic reaction coordinate (IRC) for th...
By both the EHT and the CNDO/2 calculations, the linear dimer of methanol is found to be more stable...
We performed ab initio quantum chemical studies for the development of intra and intermolecular inte...
A new molecular model for formic acid is proposed which favorably describes vapor-liquid equilibrium...
Ab initio molecular dynamics simulations of formic acid (FA) dimer colliding with liquid water at 30...
We have performed quantum mechanical calculations to study the geometries and binding energies of bi...
Double proton transfers in formic acid dimer and formamidine dimer were studied as prototypes of mul...
Quantum and classical molecular dynamics simulations are used to explore whether chemical reactivity...
We report on the first experimental observation of formic acid dimers composed of two molecules of t...
The hydrogen-bonded dimers of formic acid derivatives XCOOH (X = H, F, Cl, and CH3) have been invest...
calculation Abstract: This article reports Raman and infrared spectroscopy and density functional th...
The deprotonation of formic acid is investigated using metadynamics in tandem with Born-Oppenheimer ...
The deprotonation of formic acid is investigated using metadynamics in tandem with Born-Oppenheimer ...
To find the set of minima in hydrogen bonded and weakly interacting complexes is often a difficult t...
To find the set of minima in hydrogen bonded and weakly interacting complexes is often a difficult t...
Transition state structures, activation energies, and the intrinsic reaction coordinate (IRC) for th...
By both the EHT and the CNDO/2 calculations, the linear dimer of methanol is found to be more stable...