International audienceDespite the impressive number of interlocked molecules described in the literature over the past 30 years, only a few stereoselective syntheses of mechanically chiral rotaxanes have been reported so far. In this study, we present the first diastereoselective synthesis of mechanically planar chiral [1]rotaxanes, that has been achieved using the active template Cu-mediated alkyne-azide cycloaddition reaction. This synthetic method has been applied to the preparation of a [1]rotaxane bearing a labile stopper that can then be substituted without disruption of the mechanical bond. This approach paves the way for the synthesis of a wide variety of mechanically planar chiral [1]rotaxanes, hence allowing the study of the prope...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Mechanically interlocked molecules (MIMs) have progressed from synthetic curios to readily accessibl...
International audienceA route to mechanically interlocked architectures that requires only a catalyt...
International audienceDespite the impressive number of interlocked molecules described in the litera...
Rotaxanes can display molecular chirality solely due to the mechanical bond between the axle and enc...
Mechanically interlocked molecules (MIMs) have been attracting increasing interest since their emerg...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Once merely a synthetic curiosity, mechanically interlocked molecules (MIMs) have become readily ac...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Mechanically interlocked molecules are very interesting compounds for their architecture. The core o...
Rotaxanes are interlocked molecules in which a molecular ring is trapped on a dumbbell-shaped axle b...
Mechanically interlocked molecules have been of interest to chemists since the 1960s. Recent synthet...
The active template approach to mechanically interlocked molecules is a versatile and powerful metho...
ABSTRACT: We describe the first method for produc-tion of mechanically planar chiral rotaxanes in ex...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Mechanically interlocked molecules (MIMs) have progressed from synthetic curios to readily accessibl...
International audienceA route to mechanically interlocked architectures that requires only a catalyt...
International audienceDespite the impressive number of interlocked molecules described in the litera...
Rotaxanes can display molecular chirality solely due to the mechanical bond between the axle and enc...
Mechanically interlocked molecules (MIMs) have been attracting increasing interest since their emerg...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Once merely a synthetic curiosity, mechanically interlocked molecules (MIMs) have become readily ac...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Mechanically interlocked molecules are very interesting compounds for their architecture. The core o...
Rotaxanes are interlocked molecules in which a molecular ring is trapped on a dumbbell-shaped axle b...
Mechanically interlocked molecules have been of interest to chemists since the 1960s. Recent synthet...
The active template approach to mechanically interlocked molecules is a versatile and powerful metho...
ABSTRACT: We describe the first method for produc-tion of mechanically planar chiral rotaxanes in ex...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Mechanically interlocked molecules (MIMs) have progressed from synthetic curios to readily accessibl...
International audienceA route to mechanically interlocked architectures that requires only a catalyt...