Iodine and compounds of iodine in higher oxidation states have emerged as versatile and environmentally benign reagents for organic chemistry. One of the most impressive recent achievements in this area has been the discovery of catalytic activity of iodine in numerous oxidative transformations leading to the formation of new Csingle bondO, Csingle bondN, and Csingle bondC bonds in organic compounds. These catalytic transformations in many cases are very similar to the transition metal-catalyzed reactions, but have the advantage of environmental sustainability and efficient utilization of natural resources. Iodine is an environmentally friendly and a relatively inexpensive element, which is currently underutilized in industrial applications...
The anodic oxidation of aryl iodides is a powerful method for the synthesis of hypervalent iodine re...
International audienceMost of the polyvalent organoiodine compounds derive from iodoarenes, which ar...
University of Minnesota M.S. thesis. September 2011. Major: Chemistry. Advisor: Dr. Viktor Zhankin. ...
AbstractIodine and compounds of iodine in higher oxidation states have emerged as versatile and envi...
Hypervalent iodine compounds as environmentally friendly and relatively inexpensive reagents have pr...
This review summarizes industrial applications of inorganic and organic polyvalent (hypervalent) iod...
This thesis discloses two distinct applications of synthesized iodoarene-containing compounds: as hy...
The main aim of the work presented here is to develop new, practical, economical, and environmental ...
The activation of small molecules, such as O2 or N2, as synthons for sustainable synthetic chemistry...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Chemistry of hypervalent iodine reagents have developed extensively after the discovery of IBX as a ...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
Hypervalent iodine reagents are environmentally benign alternatives to heavy metal oxidants. They a...
Understanding the role of boranes in hypervalent iodine chemistry will open up new reactivities whic...
The anodic oxidation of aryl iodides is a powerful method for the synthesis of hypervalent iodine re...
International audienceMost of the polyvalent organoiodine compounds derive from iodoarenes, which ar...
University of Minnesota M.S. thesis. September 2011. Major: Chemistry. Advisor: Dr. Viktor Zhankin. ...
AbstractIodine and compounds of iodine in higher oxidation states have emerged as versatile and envi...
Hypervalent iodine compounds as environmentally friendly and relatively inexpensive reagents have pr...
This review summarizes industrial applications of inorganic and organic polyvalent (hypervalent) iod...
This thesis discloses two distinct applications of synthesized iodoarene-containing compounds: as hy...
The main aim of the work presented here is to develop new, practical, economical, and environmental ...
The activation of small molecules, such as O2 or N2, as synthons for sustainable synthetic chemistry...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Chemistry of hypervalent iodine reagents have developed extensively after the discovery of IBX as a ...
This review summarizes the chemistry of hypervalent iodine(III) compounds with emphasis of their syn...
Iodine is a special element. Its speciality lies in the fact that it is the heaviest non radioactive...
Hypervalent iodine reagents are environmentally benign alternatives to heavy metal oxidants. They a...
Understanding the role of boranes in hypervalent iodine chemistry will open up new reactivities whic...
The anodic oxidation of aryl iodides is a powerful method for the synthesis of hypervalent iodine re...
International audienceMost of the polyvalent organoiodine compounds derive from iodoarenes, which ar...
University of Minnesota M.S. thesis. September 2011. Major: Chemistry. Advisor: Dr. Viktor Zhankin. ...