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Heterotelechelic homopolymers mimicking high χ - ultralow N block copolymers with sub-2 nm domain size.


ABSTRACT: Three fluorinated, hydrophobic initiators have been utilised for the synthesis of low molecular mass fluoro-poly(acrylic acid) heterotelechelic homopolymers to mimic high chi (χ)-low N diblock copolymers with ultrafine domains of sub-2 nm length scale. Polymers were obtained by a simple photoinduced copper(ii)-mediated reversible-deactivation radical polymerisation (Cu-RDRP) affording low molecular mass (<3 kDa) and low dispersity (Đ = 1.04-1.21) homopolymers. Heating/cooling ramps were performed on bulk samples (ca. 250 μm thick) to obtain thermodynamically stable nanomorpologies of lamellar (LAM) or hexagonally packed cylinders (HEX), as deduced by small-angle X-ray scattering (SAXS). Construction of the experimental phase diagram alongside a detailed theoretical model demonstrated typical rod-coil block copolymer phase behaviour for these fluoro-poly(acrylic acid) homopolymers, where the fluorinated initiator-derived segment acts as a rod and the poly(acrylic acid) as a coil. This work reveals that these telechelic homopolymers mimic high χ-ultralow N diblock copolymers and enables reproducible targeting of nanomorphologies with incredibly small, tunable domain size.

SUBMITTER: Hancox E 

PROVIDER: S-EPMC8985574 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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Heterotelechelic homopolymers mimicking high <i>χ</i> - ultralow <i>N</i> block copolymers with sub-2 nm domain size.

Hancox E E   Derry M J MJ   Greenall M J MJ   Huband S S   Al-Shok L L   Town J S JS   Topham P D PD   Haddleton D M DM  

Chemical science 20220314 14


Three fluorinated, hydrophobic initiators have been utilised for the synthesis of low molecular mass fluoro-poly(acrylic acid) heterotelechelic homopolymers to mimic high chi (<i>χ</i>)-low <i>N</i> diblock copolymers with ultrafine domains of sub-2 nm length scale. Polymers were obtained by a simple photoinduced copper(ii)-mediated reversible-deactivation radical polymerisation (Cu-RDRP) affording low molecular mass (<3 kDa) and low dispersity (<i>Đ</i> = 1.04-1.21) homopolymers. Heating/coolin  ...[more]

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