2025 - Sustainable Industrial Processing Summit
SIPS2025 Volume 4. Matyjaszewski Intl. Symp. / Polymers

Editors:F. Kongoli, R.C. Advincula, B.Z. Tang, S. Thomas
Publisher:Flogen Star OUTREACH
Publication Year:2025
Pages:208 pages
ISBN:978-1-998384-44-0 (CD)
ISSN:2291-1227 (Metals and Materials Processing in a Clean Environment Series)
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    MACROMOLECULAR ENGINEERING BY ATOM TRANSFER RADICAL POLYMERIZATION

    Krzysztof Matyjaszewski1;
    1CARNEGIE MELLON UNIVERSITY, Pittsburgh, United States;
    Type of Paper: Plenary
    Id Paper: 332
    Topic: 62

    Abstract:

    Various well-defined polymers with precisely controlled macromolecular architecture were prepared under environmentally benign conditions, with ppm of catalysts, in an aqueous environment, and in open-air with temporal control by light, electrical current, mechanical forces, or benign chemicals such as ascorbic acid.  The dynamic exchange between active radicals and dormant species catalyzed by ppm amounts of copper catalyst in atom transfer radical polymerization (ATRP) enabled access to uniform star, comb, bottlebrush, or cyclic polymers with controlled chain composition, such as block, gradient, or periodic structures. Macromolecular engineering provided access to designed bioconjugates by covalently linking synthetic polymers with proteins or nucleic acids (DNA and RNA) and attaching polymers to inorganic surfaces such as nanoparticles or flat wafers. Such well-defined polymers and hybrid materials outperform conventional commercial products; they can self-assemble, self-repair, depolymerize back to monomers, and respond to external stimuli. They find applications in the areas of biomedicine, environment, and energy.

    Keywords:

    ATRP; Macromolecules; bioconjugates

    Cite this article as:

    Matyjaszewski K. (2024). MACROMOLECULAR ENGINEERING BY ATOM TRANSFER RADICAL POLYMERIZATION. In F. Kongoli, R.C. Advincula, B.Z. Tang, S. Thomas (Eds.), Sustainable Industrial Processing Summit Volume 4 Matyjaszewski Intl. Symp. / Polymers (pp. 125-126). Montreal, Canada: FLOGEN Star Outreach