A computational study on Pinnick oxidation of aldehydes into carboxylic acids using density functional theory (DFT) calculations has been evaluated with the (SMD)-M06-2X/aug-pVDZ level of theory, leading to an important understanding of the reaction mechanism that agrees with the experimental observations and explaining the substantial role of acid in driving the reaction. The DFT results elucidated that the first reaction step (FRS) proceeds in a manner where chlorous acid reacts with the aldehyde group through a distorted six-membered ring transition state to give a hydroxyallyl chlorite intermediate that undergoes a pericyclic fragmentation to release the carboxylic acid as a second reaction step (SRS). 1H NMR experiments and simulations...
DFT studies on the catalytic mechanism involved in the catalytic oxidation of C-H bonds of hydrocarb...
The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important ox...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...
The mechanism of aldehyde to carboxylic acid conversion catalyzed by P450 enzymes via a series of re...
Density functional theory (DFT) calculations at the B3LYP/6-31G(d,p) (LANL2DZ for Zr) level of theor...
Several reaction mechanisms for the interconversion of carbonyls and alcohols in solution are examin...
The mechanism of the Zn(II) catalyzed oxidation of benzylic alcohol to benzaldehyde and ester by H2O...
Though much of the reaction mechanism of the oxidative conversion of methanol to formaldehyde on sil...
The Lewis acid catalysed mechanism of dimethyl carbonate (DMC) mediated carboxymethylation of alcoho...
The reaction mechanism of the L-proline-catalyzed alpha-aminoxylation reaction between aldehyde and ...
Density functional theory (DFT) calculations have been performed to investigate the alcohol oxidatio...
We present new reaction pathways relevant to low-temperature oxidation in gaseous and condensed phas...
The combination of triethylsilane and potassium tert–butoxide is known as the Grubbs–Stoltz reagent ...
Throughout the last decades the water oxidation process has been extensively investigated. However,...
<p>The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important...
DFT studies on the catalytic mechanism involved in the catalytic oxidation of C-H bonds of hydrocarb...
The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important ox...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...
The mechanism of aldehyde to carboxylic acid conversion catalyzed by P450 enzymes via a series of re...
Density functional theory (DFT) calculations at the B3LYP/6-31G(d,p) (LANL2DZ for Zr) level of theor...
Several reaction mechanisms for the interconversion of carbonyls and alcohols in solution are examin...
The mechanism of the Zn(II) catalyzed oxidation of benzylic alcohol to benzaldehyde and ester by H2O...
Though much of the reaction mechanism of the oxidative conversion of methanol to formaldehyde on sil...
The Lewis acid catalysed mechanism of dimethyl carbonate (DMC) mediated carboxymethylation of alcoho...
The reaction mechanism of the L-proline-catalyzed alpha-aminoxylation reaction between aldehyde and ...
Density functional theory (DFT) calculations have been performed to investigate the alcohol oxidatio...
We present new reaction pathways relevant to low-temperature oxidation in gaseous and condensed phas...
The combination of triethylsilane and potassium tert–butoxide is known as the Grubbs–Stoltz reagent ...
Throughout the last decades the water oxidation process has been extensively investigated. However,...
<p>The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important...
DFT studies on the catalytic mechanism involved in the catalytic oxidation of C-H bonds of hydrocarb...
The Cl + HCOOH reaction is important in the atmosphere, as the chlorine (Cl) atom is an important ox...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...