location: Current position: Home >> Scientific Research >> Paper Publications

Crystalline CO2-based polycarbonates prepared from racemic catalyst through intramolecularly interlocked assembly

Hits:

Indexed by:Journal Papers

Date of Publication:2015-10-01

Journal:NATURE COMMUNICATIONS

Included Journals:SCIE、PubMed、Scopus

Volume:6

Page Number:8594

ISSN No.:2041-1723

Abstract:The crystalline stereocomplexed polycarbonates can be prepared by mixing enantiopure polymers with opposite configuration, which derived from the asymmetric copolymerization with CO2 using enantiopure catalyst or/and chiral epoxides. Herein, we develop a powerful strategy for producing crystalline intramolecular stereocomplexed polycarbonates from racemic catalysts, which possess similar thermal stability and crystalline behaviour in comparison with the stereocomplexes by mixing opposite enantiopure polymers. Living polymer chains shuttle between catalyst molecules with different configurations to produce diastereomeric active species which is suggested to be responsible for the formation of isotactic multiblock polycarbonates in racemic bimetallic cobalt catalyst-mediated stereoselective copolymerization of CO2 and meso-epoxides. Solid-state NMR spectroscopy study suggests that the interaction in the carbonyl and methine regions is responsible for the strong crystallization capacity and compact package structure in the crystalline polycarbonates.

Pre One:聚碳酸酯立体复合物:从无定型到结晶型材料转变

Next One:Crystalline Hetero-Stereocomplexed Polycarbonates Produced from Amorphous Opposite Enantiomers Having Different Chemical Structures