Hexafluoroisopropan-2-ol (HFIP) has been found to be an unusually beneficial solvent for undertaking hypervalent iodine-initiated [2+2] cycloaddition of styrenes. For the initiator phenyliodine(III) diacetate (PIDA), voltammetric data demonstrate that the enhanced reactivity in HFIP is due to its greater oxidizing abilities in this fluorinated solvent such that in HFIP the reactivity of PIDA is comparable if not superior to its fluorinated analog phenyliodine(III) bis(trifluoroacetate). These results contrast with the often reported view that the role of the fluoroalcohol is to stabilize a radical cation formed by single electron transfer. Moreover, combined NMR and HRMS results reveal the formation of a strong H-bonded adduct between th...
In this manuscript, we report clear evidence for the generation of aromatic cation radicals produced...
In modern organic chemistry, hypervalent (HV) iodine(III) compounds have been used widely as oxidizi...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...
Hexafluoroisopropan-2-ol (HFIP) has been found to be an unusually beneficial solvent for undertaking...
Fluorination of styrene derivatives with a reagent system composed of μ-oxo-bis[trifluoroacetato(p...
The main aim of the work presented here is to develop new, practical, economical, and environmental ...
Despite ample evidence for the unique reactivity offered by hypervalent F-iodanes, mechanistic inves...
Despite ample evidence for the unique reactivity offered by hypervalent F-iodanes, mechanistic inves...
The non-alternant aromatic hydrocarbon fluoranthene (Ar 0) has been reduced, either chemically with ...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
International audienceThe influence of substituents on the properties of tri- and hexafluorinated al...
International audienceHexafluoroisopropanol (HFIP) is a solvent with unique properties that has rece...
Hyper-reactive: A highly reactive, fully fluorinated hypervalent iodine reagent (see formula) mediat...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
1,1,1,3,3,3-Hexafluoroisopropanol (HFIP) has emerged as an attractive tool in developing and facilit...
In this manuscript, we report clear evidence for the generation of aromatic cation radicals produced...
In modern organic chemistry, hypervalent (HV) iodine(III) compounds have been used widely as oxidizi...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...
Hexafluoroisopropan-2-ol (HFIP) has been found to be an unusually beneficial solvent for undertaking...
Fluorination of styrene derivatives with a reagent system composed of μ-oxo-bis[trifluoroacetato(p...
The main aim of the work presented here is to develop new, practical, economical, and environmental ...
Despite ample evidence for the unique reactivity offered by hypervalent F-iodanes, mechanistic inves...
Despite ample evidence for the unique reactivity offered by hypervalent F-iodanes, mechanistic inves...
The non-alternant aromatic hydrocarbon fluoranthene (Ar 0) has been reduced, either chemically with ...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
International audienceThe influence of substituents on the properties of tri- and hexafluorinated al...
International audienceHexafluoroisopropanol (HFIP) is a solvent with unique properties that has rece...
Hyper-reactive: A highly reactive, fully fluorinated hypervalent iodine reagent (see formula) mediat...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
1,1,1,3,3,3-Hexafluoroisopropanol (HFIP) has emerged as an attractive tool in developing and facilit...
In this manuscript, we report clear evidence for the generation of aromatic cation radicals produced...
In modern organic chemistry, hypervalent (HV) iodine(III) compounds have been used widely as oxidizi...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...