Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, aromatic compounds. The mechanisms of these transformations and the factors that lead either to extradiol cleavage or intradiol cleavage have not been fully understood. By using density functional theory we have elucidated the mechanism of the catalytic cycle for two biomimetic complexes, and explained the difference in the experimentally obtained products.Supplementary material: [ http://cherry.chem.bg.ac.rs/handle/123456789/2981
Supplementary material for: [https://doi.org/10.1039/c7ob01814b]Related to published version: [http:...
Catechol intradiol dioxygenation is a unique reaction catalyzed by iron-dependent enzymes and nonhem...
Within the broad group of Fe non-heme oxidases, our attention was focused on the catechol 1,2- and 2...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
The enzymatic ring cleavage of catechol derivatives is catalyzed by two groups of dioxygenases: extr...
The enzymatic ring cleavage of catechol derivatives is catalyzed by two groups of dioxygenases: extr...
The mechanism for extradiol cleavage in non-heme iron catechol dioxygenase was modelled theoreticall...
Metallo-enzymes catalyse a rich variety of biochemical reactions, some of which have little or no pr...
Nonheme iron enzymes play an important role in the aerobic degradation of aromatic ring systems. Mos...
Catechol 1,2-dioxygenase (CTD) and protocatechuate 3,4-dioxygenase (PCD) are bacterial non-heme iron...
The major oxygenation product of catechol by dioxygen in the presence of FeCl2 or FeCl3, 1,4,7-triaz...
A detailed description of the mechanism of C–H hydroxylation by Rieske non-heme iron dioxygenases re...
Supplementary material for: [https://doi.org/10.1039/c7ob01814b]Related to published version: [http:...
Catechol intradiol dioxygenation is a unique reaction catalyzed by iron-dependent enzymes and nonhem...
Within the broad group of Fe non-heme oxidases, our attention was focused on the catechol 1,2- and 2...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
Iron-dependent enzymes and biomimetic iron complexes can catalyze the ring cleavage of very inert, a...
The enzymatic ring cleavage of catechol derivatives is catalyzed by two groups of dioxygenases: extr...
The enzymatic ring cleavage of catechol derivatives is catalyzed by two groups of dioxygenases: extr...
The mechanism for extradiol cleavage in non-heme iron catechol dioxygenase was modelled theoreticall...
Metallo-enzymes catalyse a rich variety of biochemical reactions, some of which have little or no pr...
Nonheme iron enzymes play an important role in the aerobic degradation of aromatic ring systems. Mos...
Catechol 1,2-dioxygenase (CTD) and protocatechuate 3,4-dioxygenase (PCD) are bacterial non-heme iron...
The major oxygenation product of catechol by dioxygen in the presence of FeCl2 or FeCl3, 1,4,7-triaz...
A detailed description of the mechanism of C–H hydroxylation by Rieske non-heme iron dioxygenases re...
Supplementary material for: [https://doi.org/10.1039/c7ob01814b]Related to published version: [http:...
Catechol intradiol dioxygenation is a unique reaction catalyzed by iron-dependent enzymes and nonhem...
Within the broad group of Fe non-heme oxidases, our attention was focused on the catechol 1,2- and 2...