Results from condensed phase <i>ab initio</i> molecular dynamics (AIMD) simulations suggest a proton transfer reaction is facilitated by “presolvation” in which the hydronium is transiently solvated by four water molecules, similar to the typical solvation structure of water, by accepting a weak hydrogen bond from the fourth water molecule. A new version 3.2 multistate empirical valence bond (MS-EVB 3.2) model for the hydrated excess proton incorporating this presolvation behavior is therefore developed. The classical MS-EVB simulations show similar structural properties as those of the previous model but with significantly improved diffusive behavior. The inclusion of nuclear quantum effects in the MS-EVB also provides an even better descr...
dissertationProton transport and solvation in water is the most fundamental but critical problem tha...
The dynamics of protons, the nuclei of hydrogen atoms, are of focal interest in chemistry and biophy...
The UiO–66(Zr)–(CO<sub>2</sub>H)<sub>2</sub> metal–organic framework (MOF) has been recently reveal...
Molecular dynamics simulations have been performed to analyze microscopic details related to aqueous...
The excess proton mobility in water has attracted scientific attention for more than a century. Deta...
We investigate the solvation shell structures, the distribution of protonic defects, mechanistic det...
The excess proton mobility in water has attracted scientific attention for more than a century. Deta...
The semiempirical MNDO-based AM1 and PM3 methods and the orthogonalization-corrected OM1, OM2, and O...
The molecular mechanics with proton transfer (MMPT) force field is combined withmulti state adiabati...
We present the reactivity of an organic intermediate by studying the proton transfer process from wa...
Reactive molecular dynamics simulations are performed to study proton transport in various aqueous s...
The aqueous proton is one of the fundamental species of aqueous chemistry, but a clear picture of it...
Recent experiments reported that proton mobility in tetramethylurea (TMU) solutions is much slower t...
Despite its simple molecular formula, obtaining an accurate in silico description of water is far fr...
Predicting the asymmetric structure and dynamics of solvated hydroxide and hydronium in water has be...
dissertationProton transport and solvation in water is the most fundamental but critical problem tha...
The dynamics of protons, the nuclei of hydrogen atoms, are of focal interest in chemistry and biophy...
The UiO–66(Zr)–(CO<sub>2</sub>H)<sub>2</sub> metal–organic framework (MOF) has been recently reveal...
Molecular dynamics simulations have been performed to analyze microscopic details related to aqueous...
The excess proton mobility in water has attracted scientific attention for more than a century. Deta...
We investigate the solvation shell structures, the distribution of protonic defects, mechanistic det...
The excess proton mobility in water has attracted scientific attention for more than a century. Deta...
The semiempirical MNDO-based AM1 and PM3 methods and the orthogonalization-corrected OM1, OM2, and O...
The molecular mechanics with proton transfer (MMPT) force field is combined withmulti state adiabati...
We present the reactivity of an organic intermediate by studying the proton transfer process from wa...
Reactive molecular dynamics simulations are performed to study proton transport in various aqueous s...
The aqueous proton is one of the fundamental species of aqueous chemistry, but a clear picture of it...
Recent experiments reported that proton mobility in tetramethylurea (TMU) solutions is much slower t...
Despite its simple molecular formula, obtaining an accurate in silico description of water is far fr...
Predicting the asymmetric structure and dynamics of solvated hydroxide and hydronium in water has be...
dissertationProton transport and solvation in water is the most fundamental but critical problem tha...
The dynamics of protons, the nuclei of hydrogen atoms, are of focal interest in chemistry and biophy...
The UiO–66(Zr)–(CO<sub>2</sub>H)<sub>2</sub> metal–organic framework (MOF) has been recently reveal...