The ring-opening polymerisation of lactide by a range of amino oxazoline and amino thiazoline catalysts is reported. The more electron-rich derivatives are demonstrated to be the most highly active and polymerisation is well controlled, as evidenced by the linear relationship between the molecular weight and both the monomer conversion and the monomer-toinitiator ratio. Mechanistic studies reveal significant interactions between the monomer, initiator and catalyst and that the polymerisation is first order with respect to each of these components. These observations indicate that the polymerisation operates by a general base/pseudo-anionic mechanism
To obtain more insight in the ring-opening polymerization of lactones, complex formation of the init...
International audienceNovel zinc(II) and cobalt(II) complexes containing tripodal mono(phenolate) li...
We report here our investigations of the mechanism and kinetics of N-heterocyclic molecules as initi...
The important advances and current trends in the stereocontrolled ring-opening polymerisation of lac...
In this study, organocatalytic systems containing both basic and acidic sites, which can activate si...
: The ring-opening polymerisation of lactones, by different initiator-catalyst systems, has been stu...
International audienceA dual catalytic system combining an original cationic zinc complex and a tert...
The ring-opening polymerization of lactides has been studied in bulk using either 2-ethylhexanoic ac...
New monoalkyl-substituted lactides were synthesized by reaction of α-hydroxy acids with 2-bromopropi...
A simple and easily available organocatalytic system was developed for the polymerization of lactide...
A series of zinc complexes based on asymmetrical N,N,O-tridentate ligands were prepared via binaphth...
Poly(lactic acid) (PLA) is one of the best candidates as a sustainable plastic material for a circul...
The mechanism of the ring-opening polymerization (ROP) of lactide catalyzed by two partner hydrogen-...
Nucleobase-functionalized polymers are widely used in the fields of supramolecular chemistry and sel...
Poly (6-caprolactone) (PCL) and poly (L-lactide) (PLA) were prepared by ring-opening Polymerization ...
To obtain more insight in the ring-opening polymerization of lactones, complex formation of the init...
International audienceNovel zinc(II) and cobalt(II) complexes containing tripodal mono(phenolate) li...
We report here our investigations of the mechanism and kinetics of N-heterocyclic molecules as initi...
The important advances and current trends in the stereocontrolled ring-opening polymerisation of lac...
In this study, organocatalytic systems containing both basic and acidic sites, which can activate si...
: The ring-opening polymerisation of lactones, by different initiator-catalyst systems, has been stu...
International audienceA dual catalytic system combining an original cationic zinc complex and a tert...
The ring-opening polymerization of lactides has been studied in bulk using either 2-ethylhexanoic ac...
New monoalkyl-substituted lactides were synthesized by reaction of α-hydroxy acids with 2-bromopropi...
A simple and easily available organocatalytic system was developed for the polymerization of lactide...
A series of zinc complexes based on asymmetrical N,N,O-tridentate ligands were prepared via binaphth...
Poly(lactic acid) (PLA) is one of the best candidates as a sustainable plastic material for a circul...
The mechanism of the ring-opening polymerization (ROP) of lactide catalyzed by two partner hydrogen-...
Nucleobase-functionalized polymers are widely used in the fields of supramolecular chemistry and sel...
Poly (6-caprolactone) (PCL) and poly (L-lactide) (PLA) were prepared by ring-opening Polymerization ...
To obtain more insight in the ring-opening polymerization of lactones, complex formation of the init...
International audienceNovel zinc(II) and cobalt(II) complexes containing tripodal mono(phenolate) li...
We report here our investigations of the mechanism and kinetics of N-heterocyclic molecules as initi...