Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthesis by providing novel and more efficient paths. Realization of this goal requires the discovery of mechanisms that can alter in a predictable manner the innate reactivity of these bonds. Ideally, these mechanisms need to make oxidation of aliphatic C−H bonds, which are recognized as relatively inert, compatible with the presence of electron rich functional groups that are highly susceptible to oxidation. Furthermore, predictable modification of the relative reactivity of different C−H bonds within a molecule would enable rapid diversification of the resulting oxidation products. Herein we show that by engaging in hydrogen bonding, fluorinat...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C–H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C–H bonds are called on to revolutionize organic synthe...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
We previously reported that the iminopyridine iron(ii) complex 1, easily and quantitatively obtainab...
A detailed study on the C(sp3)-H bond oxygenation reactions with H2O2 catalyzed by the [Mn(OTf)2(TIP...
A detailed study on the C(sp3)-H bond oxygenation reactions with H2O2 catalyzed by the [Mn(OTf)2(TIP...
Aliphatic C−H oxidation is the most straightforward approach to functionalize hydrocarbon skeletons....
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C−H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C–H bonds are called on to revolutionize organic synthe...
Methods for selective oxidation of aliphatic C–H bonds are called on to revolutionize organic synthe...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
The oxidation of aromatic substrates to phenols with H2O2 as a benign oxidant remains an ongoing cha...
We previously reported that the iminopyridine iron(ii) complex 1, easily and quantitatively obtainab...
A detailed study on the C(sp3)-H bond oxygenation reactions with H2O2 catalyzed by the [Mn(OTf)2(TIP...
A detailed study on the C(sp3)-H bond oxygenation reactions with H2O2 catalyzed by the [Mn(OTf)2(TIP...
Aliphatic C−H oxidation is the most straightforward approach to functionalize hydrocarbon skeletons....
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...
Substituted N-cyclohexyl amides undergo aliphatic C−H bond oxidation with H2O2 catalyzed by manganes...