Non‐iodinated arenes are easily and selectively converted into (diacetoxyiodo)arenes in a single step under mild conditions using iodine triacetates as reagents. The oxidative step is decoupled from the synthesis of hypervalent iodine(III) reagents which can now be prepared conveniently in a one‐pot synthesis for subsequent reactions without prior purification. The chemistry of iodine triacetates was also expanded to heteroatom ligand exchanges to form novel inorganic hypervalent iodine compounds
This thesis discloses two distinct applications of synthesized iodoarene-containing compounds: as hy...
AbstractIodine and compounds of iodine in higher oxidation states have emerged as versatile and envi...
The first stereoselective version of an iodine(III)-mediated rearrangement of arylketones in the pre...
Non‐iodinated arenes are easily and selectively converted into (diacetoxyiodo)arenes in a single ste...
With increasing demands for developing environmentally friendly synthetic approaches, hypervalent i...
A novel class of chiral hypervalent iodine reagents containing an α-tetralol-scaffold is being intro...
Two new hypervalent iodine reagents containing furan and thiophene moieties in addition to a carbony...
Hypervalent iodine compounds as environmentally friendly and relatively inexpensive reagents have pr...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Novel electron-deficient chiral hypervalent iodine reagents were prepared in good overall yields. Th...
The chemistry of hypervalent iodine(III) reagents have widely been explored in many organic transfor...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
Hypervalent iodine compounds are molecules of increasing interest to the synthetic chemist. Their lo...
This thesis discloses two distinct applications of synthesized iodoarene-containing compounds: as hy...
AbstractIodine and compounds of iodine in higher oxidation states have emerged as versatile and envi...
The first stereoselective version of an iodine(III)-mediated rearrangement of arylketones in the pre...
Non‐iodinated arenes are easily and selectively converted into (diacetoxyiodo)arenes in a single ste...
With increasing demands for developing environmentally friendly synthetic approaches, hypervalent i...
A novel class of chiral hypervalent iodine reagents containing an α-tetralol-scaffold is being intro...
Two new hypervalent iodine reagents containing furan and thiophene moieties in addition to a carbony...
Hypervalent iodine compounds as environmentally friendly and relatively inexpensive reagents have pr...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Novel electron-deficient chiral hypervalent iodine reagents were prepared in good overall yields. Th...
The chemistry of hypervalent iodine(III) reagents have widely been explored in many organic transfor...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
Hypervalent iodine(III) compounds are attractive reagents in organic synthesis. The main advantages ...
Hypervalent iodine compounds are molecules of increasing interest to the synthetic chemist. Their lo...
This thesis discloses two distinct applications of synthesized iodoarene-containing compounds: as hy...
AbstractIodine and compounds of iodine in higher oxidation states have emerged as versatile and envi...
The first stereoselective version of an iodine(III)-mediated rearrangement of arylketones in the pre...