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zadetkov: 568
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  • Polymerization-Induced Self... Polymerization-Induced Self-Assembly of Block Copolymer Nano-objects via RAFT Aqueous Dispersion Polymerization
    Warren, Nicholas J; Armes, Steven P Journal of the American Chemical Society, 07/2014, Letnik: 136, Številka: 29
    Journal Article
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    In this Perspective, we discuss the recent development of polymeriz­ation-induced self-assembly mediated by reversible addition–fragmentation chain transfer (RAFT) aqueous dispersion polymeriz­ation. ...
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  • A Critical Appraisal of RAF... A Critical Appraisal of RAFT-Mediated Polymerization-Induced Self-Assembly
    Canning, Sarah L; Smith, Gregory N; Armes, Steven P Macromolecules, 03/2016, Letnik: 49, Številka: 6
    Journal Article
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    Recently, polymerization-induced self-assembly (PISA) has become widely recognized as a robust and efficient route to produce block copolymer nanoparticles of controlled size, morphology, and surface ...
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  • Polymerization-induced self... Polymerization-induced self-assembly of block copolymer nanoparticles via RAFT non-aqueous dispersion polymerization
    Derry, Matthew J.; Fielding, Lee A.; Armes, Steven P. Progress in polymer science, 01/2016, Letnik: 52
    Journal Article
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    There is considerable current interest in polymerization-induced self-assembly (PISA) via reversible addition–fragmentation chain transfer (RAFT) polymerization as a versatile and efficient route to ...
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  • In situ SAXS studies of a p... In situ SAXS studies of a prototypical RAFT aqueous dispersion polymerization formulation: monitoring the evolution in copolymer morphology during polymerization-induced self-assembly
    Czajka, Adam; Armes, Steven P Chemical science (Cambridge), 09/2020, Letnik: 11, Številka: 42
    Journal Article
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    Small-angle X-ray scattering (SAXS) is used to characterize the formation of diblock copolymer spheres, worms and vesicles during reversible addition-fragmentation chain transfer (RAFT) aqueous ...
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  • Time-Resolved Small-Angle X... Time-Resolved Small-Angle X‑ray Scattering Studies during Aqueous Emulsion Polymerization
    Czajka, Adam; Armes, Steven P Journal of the American Chemical Society, 01/2021, Letnik: 143, Številka: 3
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    The persulfate-initiated aqueous emulsion polymerization of 2,2,2-trifluoroethyl methacrylate (TFEMA) is studied by time-resolved small-angle X-ray scattering (SAXS) at 60 °C using a stirrable ...
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  • Pickering Emulsifiers Based... Pickering Emulsifiers Based on Block Copolymer Nanoparticles Prepared by Polymerization-Induced Self-Assembly
    Hunter, Saul J; Armes, Steven P Langmuir, 12/2020, Letnik: 36, Številka: 51
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    Block copolymer nanoparticles prepared via polymerization-induced self-assembly (PISA) represent an emerging class of organic Pickering emulsifiers. Such nanoparticles are readily prepared by ...
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  • Recent Advances in Polymeri... Recent Advances in Polymerization-Induced Self-Assembly (PISA) Syntheses in Non-Polar Media
    György, Csilla; Armes, Steven P Angewandte Chemie International Edition, 10/2023, Letnik: 62, Številka: 42
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    It is well-known that polymerization-induced self-assembly (PISA) is a powerful and highly versatile technique for the rational synthesis of colloidal dispersions of diblock copolymer nanoparticles, ...
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  • Using Dynamic Covalent Chem... Using Dynamic Covalent Chemistry To Drive Morphological Transitions: Controlled Release of Encapsulated Nanoparticles from Block Copolymer Vesicles
    Deng, Renhua; Derry, Matthew J; Mable, Charlotte J ... Journal of the American Chemical Society, 06/2017, Letnik: 139, Številka: 22
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    Dynamic covalent chemistry is exploited to drive morphological order–order transitions to achieve the controlled release of a model payload (e.g., silica nanoparticles) encapsulated within block ...
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  • Mechanistic Insights for Bl... Mechanistic Insights for Block Copolymer Morphologies: How Do Worms Form Vesicles?
    Blanazs, Adam; Madsen, Jeppe; Battaglia, Giuseppe ... Journal of the American Chemical Society, 10/2011, Letnik: 133, Številka: 41
    Journal Article
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    Amphiphilic diblock copolymers composed of two covalently linked, chemically distinct chains can be considered to be biological mimics of cell membrane-forming lipid molecules, but with typically ...
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zadetkov: 568

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