In this paper, for the hydrogen abstraction reaction of HCHO by OH radicals assisted by water, formic acid, or sulfur acid, the possible reaction mechanisms and kinetics have been investigated theoretically using quantum chemistry methods and transition-state theory. The potential energy surfaces calculated at the CCSD(T)/6-311++G(df,pd)//MP2(full)/6-311++G(df,pd) levels of theory reveal that, due to the formation of strong hydrogen bond(s), the relative energies of the transition states involving catalyst are significantly reduced compared to that reaction without catalyst. However, the kinetics calculations show that the rate constants are smaller by about 3, 9, or 10 orders of magnitude for water, formic acid, or sulfur acid assisted...
We have examined the catalytic role of H2O molecules in the oxidation of CH3OH in water by quantum c...
The analysis of the hydration of formaldehyde in the presence of a hydrated proton was performed. M...
We have performed a systematic, theoretical chemical kinetic investigation of H atom abstraction by ...
The gas-phase reactions of sulfuric acid catalyzed hydrolysis of formaldehyde and formaldehyde with ...
The reaction of formic acid (HCOOH) with chlorine atom and amidogen radical (NH2) have been investig...
The chemistry of formyl radicals plays an important role in the kinetic modeling of oxygenated hydro...
We find that formic acid (FA) is very effective at facilitating diol formation through its ability t...
In this work, we used ab initio/DFT method coupled with statistical rate theory to answer the questi...
The mechanisms of hydronium- and hydroxide-catalyzed formaldehyde hydrations were investigated by qu...
<p>The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important...
Journal articleWe have performed a systematic, theoretical chemical kinetic investigation of H atom ...
The mechanism, thermochemistry and kinetics of the addition and hydrogen-atom abstraction reactions ...
The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important ox...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
High-level quantum chemistry calculations have been used to examine the hydrogen-abstraction reactio...
We have examined the catalytic role of H2O molecules in the oxidation of CH3OH in water by quantum c...
The analysis of the hydration of formaldehyde in the presence of a hydrated proton was performed. M...
We have performed a systematic, theoretical chemical kinetic investigation of H atom abstraction by ...
The gas-phase reactions of sulfuric acid catalyzed hydrolysis of formaldehyde and formaldehyde with ...
The reaction of formic acid (HCOOH) with chlorine atom and amidogen radical (NH2) have been investig...
The chemistry of formyl radicals plays an important role in the kinetic modeling of oxygenated hydro...
We find that formic acid (FA) is very effective at facilitating diol formation through its ability t...
In this work, we used ab initio/DFT method coupled with statistical rate theory to answer the questi...
The mechanisms of hydronium- and hydroxide-catalyzed formaldehyde hydrations were investigated by qu...
<p>The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important...
Journal articleWe have performed a systematic, theoretical chemical kinetic investigation of H atom ...
The mechanism, thermochemistry and kinetics of the addition and hydrogen-atom abstraction reactions ...
The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important ox...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
High-level quantum chemistry calculations have been used to examine the hydrogen-abstraction reactio...
We have examined the catalytic role of H2O molecules in the oxidation of CH3OH in water by quantum c...
The analysis of the hydration of formaldehyde in the presence of a hydrated proton was performed. M...
We have performed a systematic, theoretical chemical kinetic investigation of H atom abstraction by ...