Continuous Flow Synthesis of Functional Isocyanate-Free Poly(oxazolidone)s by Step-Growth Polymerization.

ACS Macro Lett

Center for Education and Research on Macromolecules (CERM), CESAM Research Unit, University of Liège, Sart-Tilman B6a, 4000 Liège, Belgium.

Published: May 2024

AI Article Synopsis

  • Flow chemistry offers significant benefits over traditional batch methods for producing polymers more efficiently, safely, and scalably.
  • Despite being mostly used for chain-growth polymerizations, this study shows that step-growth polymerizations (SGP) can also be effectively applied in continuous flow reactors, particularly for new nonisocyanate polyurethanes.
  • The research highlights a method to create functional poly(oxazolidone)s quickly by integrating SGP with a secondary process for polymer derivatization, achieving high production rates without isolating intermediates.

Article Abstract

Flow chemistry presents many advantages over batch processes for the fast and continuous production of polymers under more robust, safer, and easily scalable conditions. Although largely exploited for chain-growth polymerizations, it has rarely been applied to step-growth polymerizations (SGP) due to their inherent limitations. Here, we report the facile and fast preparation of an emerging class of nonisocyanate polyurethanes, i.e., CO-based poly(oxazolidone)s, by SGP in continuous flow reactors. Importantly, we also demonstrate that functional poly(oxazolidone)s are easily prepared by telescoping a flow module where SGP occurs with reagents able to simultaneously promote two polymer derivatizations in a second module, i.e., dehydration followed by cationic thiol-ene to yield poly(,-acetal oxazolidone)s. The functional polymer is produced at a high rate and functionalization degree, without requiring the isolation of any intermediates. This work demonstrates the enormous potential of flow technology for the facile and fast continuous production of functional polymers by SGP.

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Source
http://dx.doi.org/10.1021/acsmacrolett.4c00203DOI Listing

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