The azide moiety is a desirable functionality in organic molecules, useful in a variety of transformations such as olefin aziridination, C-H bond amination, isocyanate synthesis, the Staudinger reaction and the formation of azo compounds. To harness the versatility of the azide functionality fully it is important that these compounds be easy to prepare, in a clean and cost-effective manner. Conventional (non-catalysed) methods to synthesise azides generally require quite harsh reaction conditions that are often not tolerant of functional groups. In the last decade, several metal-catalysed azidations have been developed in attempts to circumvent this problem. These methods are generally faster, cleaner and more functional-group-tolerant than...
The first example of a practical and selective azidation of unactivated aliphatic C–H bonds with eas...
Selective functionalization of complex scaffolds is a promising approach to alter the pharmacologica...
Palladium metal catalyzes the decomposition of benzyl azide affording benzonitrile, benzylamine, and...
A wide range of methodologies for the preparation of organic azides has been reported in the literat...
This feature article provides an overview of the application of organic azides for the intermolecula...
Organic azides are key motifs in compounds of relevance to chemical biology, medicinal chemistry and...
A novel and efficient copper-catalyzed azidation reaction of anilines via C-H activation has been de...
The interaction of organic azides with transition metal complexes will be discussed with particular ...
Conspectus Owing to the prevalence of nitrogen-containing compounds in functional materials, natural...
An effective method to synthesize azido‐end polymethacrylates from tetrabutylammonium azide (BNN3) i...
In this review, we focus on some interesting and recent examples of various applications of organic ...
A mild and convenient method for the synthesis of amides has been explored by using secondary alcoho...
Azaindoles are rare in nature but extremely attractive for drug discovery programs. Azaindoles can b...
A novel and efficient copper-catalyzed oxyazidation and diazidation of styrenes is described. The st...
A simple, efficient, stereoselective, and in some cases usefully nonregioselective method for the sy...
The first example of a practical and selective azidation of unactivated aliphatic C–H bonds with eas...
Selective functionalization of complex scaffolds is a promising approach to alter the pharmacologica...
Palladium metal catalyzes the decomposition of benzyl azide affording benzonitrile, benzylamine, and...
A wide range of methodologies for the preparation of organic azides has been reported in the literat...
This feature article provides an overview of the application of organic azides for the intermolecula...
Organic azides are key motifs in compounds of relevance to chemical biology, medicinal chemistry and...
A novel and efficient copper-catalyzed azidation reaction of anilines via C-H activation has been de...
The interaction of organic azides with transition metal complexes will be discussed with particular ...
Conspectus Owing to the prevalence of nitrogen-containing compounds in functional materials, natural...
An effective method to synthesize azido‐end polymethacrylates from tetrabutylammonium azide (BNN3) i...
In this review, we focus on some interesting and recent examples of various applications of organic ...
A mild and convenient method for the synthesis of amides has been explored by using secondary alcoho...
Azaindoles are rare in nature but extremely attractive for drug discovery programs. Azaindoles can b...
A novel and efficient copper-catalyzed oxyazidation and diazidation of styrenes is described. The st...
A simple, efficient, stereoselective, and in some cases usefully nonregioselective method for the sy...
The first example of a practical and selective azidation of unactivated aliphatic C–H bonds with eas...
Selective functionalization of complex scaffolds is a promising approach to alter the pharmacologica...
Palladium metal catalyzes the decomposition of benzyl azide affording benzonitrile, benzylamine, and...