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Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers

Carbon dioxide derived polymers are emerging as useful materials for applications spanning packaging, construction, house-hold goods and automotive components. To accelerate and broaden their uptake requires both more active and selective catalysts and greater structural diversity for the carbon dio...

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Detalles Bibliográficos
Autores principales: Rosetto, Gloria, Deacy, Arron C., Williams, Charlotte K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480424/
https://www.ncbi.nlm.nih.gov/pubmed/34603661
http://dx.doi.org/10.1039/d1sc03856g
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author Rosetto, Gloria
Deacy, Arron C.
Williams, Charlotte K.
author_facet Rosetto, Gloria
Deacy, Arron C.
Williams, Charlotte K.
author_sort Rosetto, Gloria
collection PubMed
description Carbon dioxide derived polymers are emerging as useful materials for applications spanning packaging, construction, house-hold goods and automotive components. To accelerate and broaden their uptake requires both more active and selective catalysts and greater structural diversity for the carbon dioxide derived polymers. Here, highly active catalysts show controllable selectivity for the enchainment of mixtures of epoxide, anhydride, carbon dioxide and lactone. Firstly, metal dependent selectivity differences are uncovered using a series of dinuclear catalysts, Mg(ii)Mg(ii), Zn(ii)Zn(ii), Mg(ii)Zn(ii), and Mg(ii)Co(ii), each exposed to mixtures of bio-derived tricyclic anhydride, cyclohexene oxide and carbon dioxide (1 bar). Depending upon the metal combinations, different block structures are possible with Zn(ii)Zn(ii) yielding poly(ester-b-carbonate); Mg(ii)Mg(ii) or Mg(ii)Co(ii) catalysts delivering poly(carbonate-b-ester); and Mg(ii)Zn(ii) furnishing a random copolymer. These results indicate that carbon dioxide insertion reactions follow the order Co(ii) > Mg(ii) > Zn(ii). Using the most active and selective catalyst, Mg(ii)Co(ii), and exploiting reversible on/off switches between carbon dioxide/nitrogen at 1 bar delivers precision triblock (ABA), pentablock (BABAB) and heptablock (ABABABA) polymers (where A = poly(cyclohexylene oxide-alt-tricyclic anhydride), PE; B = poly(cyclohexene carbonate), PCHC). The Mg(ii)Co(ii) catalyst also selectively polymerizes a mixture of anhydride, carbon dioxide, cyclohexene oxide and ε-caprolactone to deliver a CBABC pentablock copolymer (A = PE, B = PCHC C = poly(caprolactone), PCL). The catalysts combine high activity and selectivity to deliver new polymers featuring regularly placed carbon dioxide and biomass derived linkages.
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spelling pubmed-84804242021-10-01 Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers Rosetto, Gloria Deacy, Arron C. Williams, Charlotte K. Chem Sci Chemistry Carbon dioxide derived polymers are emerging as useful materials for applications spanning packaging, construction, house-hold goods and automotive components. To accelerate and broaden their uptake requires both more active and selective catalysts and greater structural diversity for the carbon dioxide derived polymers. Here, highly active catalysts show controllable selectivity for the enchainment of mixtures of epoxide, anhydride, carbon dioxide and lactone. Firstly, metal dependent selectivity differences are uncovered using a series of dinuclear catalysts, Mg(ii)Mg(ii), Zn(ii)Zn(ii), Mg(ii)Zn(ii), and Mg(ii)Co(ii), each exposed to mixtures of bio-derived tricyclic anhydride, cyclohexene oxide and carbon dioxide (1 bar). Depending upon the metal combinations, different block structures are possible with Zn(ii)Zn(ii) yielding poly(ester-b-carbonate); Mg(ii)Mg(ii) or Mg(ii)Co(ii) catalysts delivering poly(carbonate-b-ester); and Mg(ii)Zn(ii) furnishing a random copolymer. These results indicate that carbon dioxide insertion reactions follow the order Co(ii) > Mg(ii) > Zn(ii). Using the most active and selective catalyst, Mg(ii)Co(ii), and exploiting reversible on/off switches between carbon dioxide/nitrogen at 1 bar delivers precision triblock (ABA), pentablock (BABAB) and heptablock (ABABABA) polymers (where A = poly(cyclohexylene oxide-alt-tricyclic anhydride), PE; B = poly(cyclohexene carbonate), PCHC). The Mg(ii)Co(ii) catalyst also selectively polymerizes a mixture of anhydride, carbon dioxide, cyclohexene oxide and ε-caprolactone to deliver a CBABC pentablock copolymer (A = PE, B = PCHC C = poly(caprolactone), PCL). The catalysts combine high activity and selectivity to deliver new polymers featuring regularly placed carbon dioxide and biomass derived linkages. The Royal Society of Chemistry 2021-08-26 /pmc/articles/PMC8480424/ /pubmed/34603661 http://dx.doi.org/10.1039/d1sc03856g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Rosetto, Gloria
Deacy, Arron C.
Williams, Charlotte K.
Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title_full Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title_fullStr Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title_full_unstemmed Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title_short Mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
title_sort mg(ii) heterodinuclear catalysts delivering carbon dioxide derived multi-block polymers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480424/
https://www.ncbi.nlm.nih.gov/pubmed/34603661
http://dx.doi.org/10.1039/d1sc03856g
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