The Power of Automation in Polymer Chemistry: Precision Synthesis of Multiblock Copolymers with Block Sequence Control

Author:

Jafari Vianna F.1ORCID,Mossayebi Zahra1ORCID,Allison‐Logan Stephanie1ORCID,Shabani Sadegh1ORCID,Qiao Greg G.1ORCID

Affiliation:

1. Department of Chemical Engineering The University of Melbourne Parkville VIC 3010 Australia

Abstract

AbstractMachines can revolutionize the field of chemistry and material science, driving the development of new chemistries, increasing productivity, and facilitating reaction scale up. The incorporation of automated systems in the field of polymer chemistry has however proven challenging owing to the demanding reaction conditions, rendering the automation setup complex and costly. There is an imminent need for an automation platform which uses fast and simple polymerization protocols, while providing a high level of control on the structure of macromolecules via precision synthesis. This work combines an oxygen tolerant, room temperature polymerization method with a simple liquid handling robot to automatically prepare precise and high order multiblock copolymers with unprecedented livingness even after many chain extensions. The highest number of blocks synthesized in such a system is reported, demonstrating the capabilities of this automated platform for the rapid synthesis and complex polymer structure formation.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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