The synthesis of 5-nitro-1-(trifluoromethyl)-3H-1λ3,2-benziodaoxol-3-one (3), a hypervalent-iodine-based electrophilic trifluoromethylating reagent, is described. Whereas considerations based on cyclic voltammetry and X-ray structural properties would predict an inferior reactivity when compared to the non-nitrated derivative 2, 19F NMR kinetic studies showed that this new derivative is almost one order of magnitude more reactive. Furthermore, differential scanning calorimetry measurements indicated that, in addition, it is also safer to handle.ISSN:1860-539
Fluorine-containing motifs are important components in pharmaceuticals and agrochemicals. Upon incor...
In this thesis, the synthesis, characterization and application, in a series of model organic synthe...
The utility of hypervalent (HV) iodine(III) compounds in organic transformations, traditionally as o...
The synthesis of 5-nitro-1-(trifluoromethyl)-3H-1λ3,2-benziodaoxol-3-one (3), a hypervalent-iodine-b...
Electrophilic trifluoromethylation is at the forefront of methodologies available for the installati...
This thesis concerns method development of new synthetic routes by applying electrophilic hypervalen...
The strategic incorporation of the trifluoromethyl (CF3) functionality within therapeutic or agroche...
The strategic incorporation of the trifluoromethyl (CF<sub>3</sub>) functionality within therapeutic...
The development of new methodologies for an efficient introduction of CF3 groups into complex molecu...
Hypervalent iodine complexes can be used to deliver a variety of functional groups to arenes. Delive...
Hypervalent iodine λ[superscript 3]-benziodoxoles are common electrophilic transfer reagents known f...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
Trifluoromethylated aromatic compounds are continuously finding use as active ingredients of various...
Methyltrioxorhenium acts as a catalyst (5–10 mol %) for the direct electrophilic trifluoromethylatio...
Fluorine makes the difference: FIBX (see structure), the tetrafluoro derivative of the hypervalent i...
Fluorine-containing motifs are important components in pharmaceuticals and agrochemicals. Upon incor...
In this thesis, the synthesis, characterization and application, in a series of model organic synthe...
The utility of hypervalent (HV) iodine(III) compounds in organic transformations, traditionally as o...
The synthesis of 5-nitro-1-(trifluoromethyl)-3H-1λ3,2-benziodaoxol-3-one (3), a hypervalent-iodine-b...
Electrophilic trifluoromethylation is at the forefront of methodologies available for the installati...
This thesis concerns method development of new synthetic routes by applying electrophilic hypervalen...
The strategic incorporation of the trifluoromethyl (CF3) functionality within therapeutic or agroche...
The strategic incorporation of the trifluoromethyl (CF<sub>3</sub>) functionality within therapeutic...
The development of new methodologies for an efficient introduction of CF3 groups into complex molecu...
Hypervalent iodine complexes can be used to deliver a variety of functional groups to arenes. Delive...
Hypervalent iodine λ[superscript 3]-benziodoxoles are common electrophilic transfer reagents known f...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
Trifluoromethylated aromatic compounds are continuously finding use as active ingredients of various...
Methyltrioxorhenium acts as a catalyst (5–10 mol %) for the direct electrophilic trifluoromethylatio...
Fluorine makes the difference: FIBX (see structure), the tetrafluoro derivative of the hypervalent i...
Fluorine-containing motifs are important components in pharmaceuticals and agrochemicals. Upon incor...
In this thesis, the synthesis, characterization and application, in a series of model organic synthe...
The utility of hypervalent (HV) iodine(III) compounds in organic transformations, traditionally as o...