The understanding of reactive processes involving organic substrates is crucial to chemical knowledge and requires multidisciplinary efforts for its advancement. Herein, we apply a combined multivariate, statistical and theoretical analysis of coupled time-resolved X-ray absorption (XAS)/UV-Vis data to obtain detailed mechanistic information for on the C-H bond activation of 9,10-dihydroanthracene (DHA) and diphenylmethane (Ph2CH2) by the nonheme FeIV-oxo complex [N4Py·FeIV(O)]2+ (N4Py = N,N-bis(2-pyridylmethyl)-N-bis(2-pyridyl)methylamine) in CH3CN at room temperature. Within this approach, we determine the number of key chemical species present in the reaction mixtures and derive spectral and concentration profiles for the reaction interm...
Biomimetic models of short-lived enzymatic reaction intermediates can give useful insight into the p...
A detailed description of the mechanism of C–H hydroxylation by Rieske non-heme iron dioxygenases re...
The hydroxylation of alkanes by heme Fe<sup>IV</sup>O species occurs via the hydrogen abstraction/ox...
Variable-temperature stopped-flow (VT-SF) electronic spectroscopy (-85 to -50°C) was utilized to stu...
We describe herein the hydrogen-atom transfer (HAT)/proton-coupled electron-transfer (PCET) reactivi...
Directed design of improved molecular catalysts for hydrogen evolution reactions relies on rational ...
The iron(III) complex [Fe(tpena)](2+) (tpena = N, N, N'-tris(2-pyridylmethyl)ethylendiamine-N'-aceta...
C-H bond activation mediated by oxo-iron (IV) species represents the key step of many heme and nonhe...
Non-heme iron(IV)-oxo species form iron(III) intermediates during hydrogen atom abstraction (HAA) fr...
A detailed mechanistic study of the hydroxylation of alkane CH bonds using H2O2 by a family of monon...
The oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is on...
The non-heme iron(IV)-oxo enzyme intermediates can perform a variety of oxidation reactions in vario...
The mechanisms of oxidative N-dealkylation of amines by heme enzymes including peroxidases and cytoc...
FeV(O)(OH) species have long been proposed to play a key role in a wide range of biomimetic and enzy...
In this work, we propose a method for the structural characterization of chemical reaction intermedi...
Biomimetic models of short-lived enzymatic reaction intermediates can give useful insight into the p...
A detailed description of the mechanism of C–H hydroxylation by Rieske non-heme iron dioxygenases re...
The hydroxylation of alkanes by heme Fe<sup>IV</sup>O species occurs via the hydrogen abstraction/ox...
Variable-temperature stopped-flow (VT-SF) electronic spectroscopy (-85 to -50°C) was utilized to stu...
We describe herein the hydrogen-atom transfer (HAT)/proton-coupled electron-transfer (PCET) reactivi...
Directed design of improved molecular catalysts for hydrogen evolution reactions relies on rational ...
The iron(III) complex [Fe(tpena)](2+) (tpena = N, N, N'-tris(2-pyridylmethyl)ethylendiamine-N'-aceta...
C-H bond activation mediated by oxo-iron (IV) species represents the key step of many heme and nonhe...
Non-heme iron(IV)-oxo species form iron(III) intermediates during hydrogen atom abstraction (HAA) fr...
A detailed mechanistic study of the hydroxylation of alkane CH bonds using H2O2 by a family of monon...
The oxidative C-H bond activation mediated by heme and nonheme enzymes and related biomimetics is on...
The non-heme iron(IV)-oxo enzyme intermediates can perform a variety of oxidation reactions in vario...
The mechanisms of oxidative N-dealkylation of amines by heme enzymes including peroxidases and cytoc...
FeV(O)(OH) species have long been proposed to play a key role in a wide range of biomimetic and enzy...
In this work, we propose a method for the structural characterization of chemical reaction intermedi...
Biomimetic models of short-lived enzymatic reaction intermediates can give useful insight into the p...
A detailed description of the mechanism of C–H hydroxylation by Rieske non-heme iron dioxygenases re...
The hydroxylation of alkanes by heme Fe<sup>IV</sup>O species occurs via the hydrogen abstraction/ox...