AbstractThis work presents an experimental and theoretical study to address the chemical reactivity of series of nitroxide radicals. For that purpose two physicochemical properties: the half-wave potential and the hyperfine coupling constants of the nitrogen nuclei, were analyzed. Experimental values are compared with electronic structure calculations at the BHandHLYP/6-311++G(2d,2p) level. E1/2 values were in good agreement with the adiabatic ionization potential when including the solvent effects by the Cramer and Truhlar Solvation Model. Preeliminar experimental electron spin deslocalization studies suggest that structural hindrance plays an important role in their deslocatization mechanism
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
The redox chemistry of different nitro compounds of biological significance is focused to understand...
AbstractThis work presents an experimental and theoretical study to address the chemical reactivity ...
The oxidation potential of a test set of 21 nitroxide radicals, including a number of novel compound...
Cyclic nitroxyl radicals (NRs) are well known as a spin label, superoxide dismutase (SOD) mimic, and...
In this thesis, computational quantum chemistry has been used to investigate the factors influe...
Nitroxide radicals are characterized by a long-lived open-shell electronic ground state and are stro...
Comparative study of electrochemical redox behaviour of five different nitroxyl radicals leads to th...
Density functional theory (DFT) calculations have been performed to address the structure of nitroxi...
Density functional theory (DFT) calculations have been performed to address the structure of nitroxi...
The spin–spin interactions between unpaired electrons in organic (poly)radicals, especially nitroxid...
The redox potentials of 25 cyclic nitroxides from four different structural classes (pyrrolidine, pi...
Nitroxide radicals are characterized by a long-lived open-shell electronic ground state and are stro...
AbstractOur research groups are by long time involved in the study of the reactivity and the pharmac...
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
The redox chemistry of different nitro compounds of biological significance is focused to understand...
AbstractThis work presents an experimental and theoretical study to address the chemical reactivity ...
The oxidation potential of a test set of 21 nitroxide radicals, including a number of novel compound...
Cyclic nitroxyl radicals (NRs) are well known as a spin label, superoxide dismutase (SOD) mimic, and...
In this thesis, computational quantum chemistry has been used to investigate the factors influe...
Nitroxide radicals are characterized by a long-lived open-shell electronic ground state and are stro...
Comparative study of electrochemical redox behaviour of five different nitroxyl radicals leads to th...
Density functional theory (DFT) calculations have been performed to address the structure of nitroxi...
Density functional theory (DFT) calculations have been performed to address the structure of nitroxi...
The spin–spin interactions between unpaired electrons in organic (poly)radicals, especially nitroxid...
The redox potentials of 25 cyclic nitroxides from four different structural classes (pyrrolidine, pi...
Nitroxide radicals are characterized by a long-lived open-shell electronic ground state and are stro...
AbstractOur research groups are by long time involved in the study of the reactivity and the pharmac...
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
Cyclic nitroxide radicals represent promising alternatives to the iodine-based redox mediator common...
The redox chemistry of different nitro compounds of biological significance is focused to understand...