The decarboxylation of 2,4-dimethoxybenzoic acid (<b>1</b>) is accelerated in acidic solutions. The rate of reaction depends upon solution acidity in a manner that is consistent with the formation of the conjugate acid of <b>1</b> (RCO<sub>2</sub>H<sub>2</sub><sup>+</sup>), with its higher energy ring-protonated tautomer allowing the requisite C–C bond cleavage. However, this would produce the conjugate acid of CO<sub>2</sub>, a species that would be too energetic to form. Considerations of mechanisms that fit the observed rate law were supplemented with DFT calculations. Those results indicate that the lowest energy pathway from the ring-protonated reactive intermediate involves early proton transfer from the carboxyl group to water along ...
Mandelylthiamin (MTh) is an accurate model of the pre-decarboxylation intermediate formed on benzoyl...
The reaction mechanism of palladium(II)-catalyzed decarboxylative addition of 2,6-dimethoxybenzoic ...
The kinetic and chemical mechanism of amine-catalyzed decarboxylation of oxaloacetic acid at pH 8.0 ...
The acid-catalyzed decarboxylation reactions of indole- and pyrrole-carboxylic acids require the add...
The acid-catalyzed decarboxylation reactions of indole- and pyrrole-carboxylic acids require the add...
Enzyme-catalyzed decarboxylation reactions are often many orders of magnitude faster than the corres...
Enzyme-catalyzed decarboxylation reactions are often many orders of magnitude faster than the corres...
Patterns in the observed catalysis of decarboxylation reactions required us to conclude that these r...
2-(2-mandelyl)thiamin (MTh), the adduct of benzoylformate and thiamin, is an accurate model of 2-(2-...
2-(2-mandelyl)thiamin (MTh), the adduct of benzoylformate and thiamin, is an accurate model of 2-(2-...
The decarboxylation of mandelylthiamin is subject to general base catalysis (β = 0.26), an outcome t...
1,3-Dimethylimidazolium-2-carboxylate <b>1</b> is stable in both pure water and pure acetonitrile. H...
Elucidation of the mechanism for decarboxylation of indolecarboxylic acids over a wide range of solu...
While any mechanism of a multistep reaction always remains a hypothesis, the strongest criteria for ...
Mandelylthiamin (MTh) is an accurate model of the pre-decarboxylation intermediate formed on benzoyl...
Mandelylthiamin (MTh) is an accurate model of the pre-decarboxylation intermediate formed on benzoyl...
The reaction mechanism of palladium(II)-catalyzed decarboxylative addition of 2,6-dimethoxybenzoic ...
The kinetic and chemical mechanism of amine-catalyzed decarboxylation of oxaloacetic acid at pH 8.0 ...
The acid-catalyzed decarboxylation reactions of indole- and pyrrole-carboxylic acids require the add...
The acid-catalyzed decarboxylation reactions of indole- and pyrrole-carboxylic acids require the add...
Enzyme-catalyzed decarboxylation reactions are often many orders of magnitude faster than the corres...
Enzyme-catalyzed decarboxylation reactions are often many orders of magnitude faster than the corres...
Patterns in the observed catalysis of decarboxylation reactions required us to conclude that these r...
2-(2-mandelyl)thiamin (MTh), the adduct of benzoylformate and thiamin, is an accurate model of 2-(2-...
2-(2-mandelyl)thiamin (MTh), the adduct of benzoylformate and thiamin, is an accurate model of 2-(2-...
The decarboxylation of mandelylthiamin is subject to general base catalysis (β = 0.26), an outcome t...
1,3-Dimethylimidazolium-2-carboxylate <b>1</b> is stable in both pure water and pure acetonitrile. H...
Elucidation of the mechanism for decarboxylation of indolecarboxylic acids over a wide range of solu...
While any mechanism of a multistep reaction always remains a hypothesis, the strongest criteria for ...
Mandelylthiamin (MTh) is an accurate model of the pre-decarboxylation intermediate formed on benzoyl...
Mandelylthiamin (MTh) is an accurate model of the pre-decarboxylation intermediate formed on benzoyl...
The reaction mechanism of palladium(II)-catalyzed decarboxylative addition of 2,6-dimethoxybenzoic ...
The kinetic and chemical mechanism of amine-catalyzed decarboxylation of oxaloacetic acid at pH 8.0 ...