One-Step Approach to Polyester–Polyether Block Copolymers Using Highly Tunable Bicomponent Catalyst
Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB) n B m type sequence struc...
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Published in | ACS macro letters Vol. 8; no. 8; pp. 973 - 978 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
United States
American Chemical Society
20.08.2019
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Online Access | Get full text |
ISSN | 2161-1653 2161-1653 |
DOI | 10.1021/acsmacrolett.9b00439 |
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Abstract | Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB) n B m type sequence structures and controlled molar mass (up to 60 kg mol–1) can be generated in one synthetic step, and the block architecture can be enriched by the use of mono-, di-, or tetrahydroxy initiators. The obtained polyester–polyether block copolymers readily undergo microphase-separation in bulk and nanoaggregation in selective (aqueous and alcoholic) solvents. |
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AbstractList | Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB)
B
type sequence structures and controlled molar mass (up to 60 kg mol
) can be generated in one synthetic step, and the block architecture can be enriched by the use of mono-, di-, or tetrahydroxy initiators. The obtained polyester-polyether block copolymers readily undergo microphase-separation in bulk and nanoaggregation in selective (aqueous and alcoholic) solvents. Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB) n B m type sequence structures and controlled molar mass (up to 60 kg mol–1) can be generated in one synthetic step, and the block architecture can be enriched by the use of mono-, di-, or tetrahydroxy initiators. The obtained polyester–polyether block copolymers readily undergo microphase-separation in bulk and nanoaggregation in selective (aqueous and alcoholic) solvents. Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB)nBm type sequence structures and controlled molar mass (up to 60 kg mol-1) can be generated in one synthetic step, and the block architecture can be enriched by the use of mono-, di-, or tetrahydroxy initiators. The obtained polyester-polyether block copolymers readily undergo microphase-separation in bulk and nanoaggregation in selective (aqueous and alcoholic) solvents.Phthalic anhydride and propylene/ethylene oxide are copolymerized at room temperature by a bicomponent metal-free catalyst comprising a mild phosphazene base and triethylborane. Provided with proper loadings of the two catalytic components, block copolymers with strict (AB)nBm type sequence structures and controlled molar mass (up to 60 kg mol-1) can be generated in one synthetic step, and the block architecture can be enriched by the use of mono-, di-, or tetrahydroxy initiators. The obtained polyester-polyether block copolymers readily undergo microphase-separation in bulk and nanoaggregation in selective (aqueous and alcoholic) solvents. |
Author | Zhang, Guangzhao Zhao, Junpeng Chen, Ye Li, Heng He, Guanchen |
AuthorAffiliation | Faculty of Materials Science and Engineering |
AuthorAffiliation_xml | – name: Faculty of Materials Science and Engineering |
Author_xml | – sequence: 1 givenname: Heng orcidid: 0000-0002-6975-931X surname: Li fullname: Li, Heng – sequence: 2 givenname: Guanchen surname: He fullname: He, Guanchen – sequence: 3 givenname: Ye orcidid: 0000-0002-0664-665X surname: Chen fullname: Chen, Ye – sequence: 4 givenname: Junpeng orcidid: 0000-0002-2590-0027 surname: Zhao fullname: Zhao, Junpeng email: msjpzhao@scut.edu.cn – sequence: 5 givenname: Guangzhao orcidid: 0000-0002-0219-3729 surname: Zhang fullname: Zhang, Guangzhao |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35619475$$D View this record in MEDLINE/PubMed |
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