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2025 article

Expanding the Scope of Self-Assembly: Heat-Induced Self-Assembly of Block Copolymers with High Solids

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Le résumé fourni par la source

Polymerization-induced self-assembly (PISA) has gained widespread recognition as a potent tool for accessing nano-objects with diverse morphologies. To facilitate its practical application, further development of the self-assembly method is still urgent and challenging. We herein report an innovative self-assembly approach termed heat-induced self-assembly (HISA), enabling the preparation of nano-objects with abundant morphologies by direct thermal dissolution of solid block copolymers (BCPs) in selective solvents at elevated concentration (20% w/w). The BCPs of polyisoprene- b -polystyrene (PI- b -PS), polyisoprene- b -poly(methyl methacrylate) (PI- b -PMMA), and polyisoprene- b -poly(4-vinylpyridine) (PI- b -P4VP) were prepared by living anionic polymerization (LAP) for HISA investigation. Furthermore, this methodology was extended to heat-induced cooperative assembly (HICA) comprising PI- b -PS m /PS n (AB m /B n ) and PI- b -PS m /PI- b -PS n (AB m /AB n ), where B represented the PS core-forming block. The feasibility of HISA and HICA processes was investigated, and a library of morphologies, including spheres, worms, vesicles, nanotubes, and sponges, were collected. The pseudophase diagrams were constructed for both AB m /B n and AB m /AB n systems to provide guiding principles for the tailored morphologies. To evaluate the universality of HISA and HICA techniques, the AC m /C n and AB m /AC n systems (C represented PMMA or P4VP core-forming block) were further investigated. The corresponding glass transition temperatures ( T g s) of BCPs in both dry and solvated states were analyzed to gain further insights into the HISA and HICA techniques. These high-concentration assembly strategies including HISA and HICA combined operational simplicity with morphological diversity, showing significant potential in practical applications.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Expanding the Scope of Self-Assembly: Heat-Induced Self-Assembly of Block Copolymers with High Solids
Date Crossref
18/04/2025
Éditeur
American Chemical Society (ACS)
Type
journal-article

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Les sujets associés

Advanced Polymer Synthesis and CharacterizationBlock Copolymer Self-AssemblyPolymer Surface Interaction Studies

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