4.8 Article

Dendronized Poly(2-oxazoline) Displays within only Five Monomer Repeat Units Liquid Quasicrystal, A15 and σ Frank-Kasper Phases

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 140, 期 49, 页码 16941-16947

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AMER CHEMICAL SOC
DOI: 10.1021/jacs.8b11103

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资金

  1. National Science Foundation [DMR-1066116, DMR-1120901, DMR-1807127]
  2. Humboldt Foundation
  3. P. Roy Vagelos Chair at Penn
  4. Howard Hughes Medical Institute

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Liquid quasicrystals (LQC) have been discovered in self-assembling benzyl ether, biphenylmethyl ether, phenylpropyl ether, biphenylpropyl ether and some of their hybrid dendrons and subsequently in block copolymers, surfactants and other assemblies. These quasiperiodic arrays, which lack long-range translational periodicity, are approximated by two Frank Kasper periodic arrays, Pm (3) over barn cubic (Frank Kasper A15) and P4(2)/mnm tetragonal (Frank Kasper sigma), which have been discovered in complex soft matter in the same order and compounds. Poly(2-oxazoline)s dendronized with (3,4) nG1 minidendrons (where n denotes an alkyl chain, CnH2n+1) self-organize into the Pm (3) over barn cubic phase (n = 14 and 15) and, as reported recently, the P4(2)/mnm tetragonal phase (n = 16). However, no LQC of a poly(2-oxazoline) is yet known. Here we report the synthesis, structural and retrostructural analysis of a dendronized poly(2-oxazoline) with n = 17 which self-organizes not only into the LQC but also in the above two Frank-Kasper approximants. All three phases are observed from the same polymer within a very narrow range of degree of polymerization that corresponds to only five monomer repeat units (5 <= DP <= 10). The formation of the Pm (3) over barn cubic, P4(2)/mnm tetragonal and LQC phases from a single polymer chain within such a narrow range of DP raises the questions of how and why each of these phases is self-organized. This system may provide a model for theoretical investigations into the self-organization of soft matter into Frank-Kasper and related periodic and quasiperiodic arrays.

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