C–H Functionalisation promises a paradigm shift in synthetic planning. However, the additional steps often required to install and remove directing groups currently detracts from the efficiency. The strategy of reversible installation of a directing group via an imine linkage has recently emerged, with the imine formed and hydrolysed in situ. Such transient directing groups can promote transition metal catalysed functionalisation of unactivated C–H bonds of aldehydes, ketones and amines. This approach removes additional steps usually required for covalent directing groups and can use catalytic quantities of the imine forming component. This review updates the rapidly developing field of transient directing groups for C–H functionalisation o...
Transient directing groups (TDGs) can provide a powerful means for C–H functionalization without req...
In the domain of synthetic chemistry, C-H bond activation has always remained in the spotlight for r...
International audienceThe present review is devoted to summarizing the recent advances (2015–2017) i...
The direct functionalization of C–H bonds is among the most fundamental chemical transformations in ...
International audienceIn recent years, the C–H bond activation field has known very fast expansion o...
International audienceIn recent years, the C–H bond activation field has known very fast expansion o...
Transition metal catalysed C–H functionalisation can enable more straightforward routes to small mol...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
Transition metal‐catalysed C‐H bond functionalisation is one of the most efficient and powerful stra...
Simple amine and diamine derivatives can promote the palladium catalysed direct β-C–H arylation of a...
International audienceTransition metal-catalyzed C-H bond functionalization has known a rapid evolut...
International audienceTransition metal-catalyzed C-H bond functionalization has known a rapid evolut...
Transition metal-catalyzed C-H bond insertion is one of the most straightforward strategies to intro...
Transient directing groups (TDGs) can provide a powerful means for C–H functionalization without req...
In the domain of synthetic chemistry, C-H bond activation has always remained in the spotlight for r...
International audienceThe present review is devoted to summarizing the recent advances (2015–2017) i...
The direct functionalization of C–H bonds is among the most fundamental chemical transformations in ...
International audienceIn recent years, the C–H bond activation field has known very fast expansion o...
International audienceIn recent years, the C–H bond activation field has known very fast expansion o...
Transition metal catalysed C–H functionalisation can enable more straightforward routes to small mol...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
International audienceIn order to directly functionalize C−H bonds of complex molecules and, in part...
Transition metal‐catalysed C‐H bond functionalisation is one of the most efficient and powerful stra...
Simple amine and diamine derivatives can promote the palladium catalysed direct β-C–H arylation of a...
International audienceTransition metal-catalyzed C-H bond functionalization has known a rapid evolut...
International audienceTransition metal-catalyzed C-H bond functionalization has known a rapid evolut...
Transition metal-catalyzed C-H bond insertion is one of the most straightforward strategies to intro...
Transient directing groups (TDGs) can provide a powerful means for C–H functionalization without req...
In the domain of synthetic chemistry, C-H bond activation has always remained in the spotlight for r...
International audienceThe present review is devoted to summarizing the recent advances (2015–2017) i...