The oxidation of iodoarenes is central to the field of hypervalent iodine chemistry. It was found that the metathetical redox reaction between (diacetoxyiodo)arenes and iodoarenes is possible in the presence of a catalytic amount of Lewis acid. This discovery opens a new strategy to access (diacetoxyiodo)arenes. A computational study is provided to rationalize the results observed
Hypervalent iodine chemistry is used as an important tool in synthetic and natural product chemistry...
Methods of synthesis of hypervalent iodine reagents and methods for oxidation of organic compounds a...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...
The oxidation of iodoarenes is central to the field of hypervalent iodine chemistry. It was found th...
Non‐iodinated arenes are easily and selectively converted into (diacetoxyiodo)arenes in a single ste...
By detailed study of the possible side reactions in the previously reported aziridination of alkenes...
In the past few decades, the chemistry of hypervalent iodine reagents has been developed as an impor...
This thesis discloses two different applications of hypervalent iodine(III) reagents in organic synt...
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...
The synthesis of α‐substituted carbonyl compounds is of great importance due to their ubiquity in bo...
Hypervalent iodine chemistry is now a well-established area of organic chemistry. Novel hypervalent ...
A practical method for the preparation of (diacetoxyiodo)arene ArI(OAc)2 is described. The use of ...
Hypervalent iodine reagents are environmentally benign alternatives to heavy metal oxidants. They a...
In this issue of Chem, Powers and co-workers demonstrate that iodanyl radicals are the key oxidants ...
Hypervalent iodine chemistry is used as an important tool in synthetic and natural product chemistry...
Methods of synthesis of hypervalent iodine reagents and methods for oxidation of organic compounds a...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...
The oxidation of iodoarenes is central to the field of hypervalent iodine chemistry. It was found th...
Non‐iodinated arenes are easily and selectively converted into (diacetoxyiodo)arenes in a single ste...
By detailed study of the possible side reactions in the previously reported aziridination of alkenes...
In the past few decades, the chemistry of hypervalent iodine reagents has been developed as an impor...
This thesis discloses two different applications of hypervalent iodine(III) reagents in organic synt...
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...
The synthesis of α‐substituted carbonyl compounds is of great importance due to their ubiquity in bo...
Hypervalent iodine chemistry is now a well-established area of organic chemistry. Novel hypervalent ...
A practical method for the preparation of (diacetoxyiodo)arene ArI(OAc)2 is described. The use of ...
Hypervalent iodine reagents are environmentally benign alternatives to heavy metal oxidants. They a...
In this issue of Chem, Powers and co-workers demonstrate that iodanyl radicals are the key oxidants ...
Hypervalent iodine chemistry is used as an important tool in synthetic and natural product chemistry...
Methods of synthesis of hypervalent iodine reagents and methods for oxidation of organic compounds a...
Hypervalent iodine (HVI) compounds are efficient reagents for the double oxidative dearomatization o...