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The photoregulation of a mechanochemical polymer scission

Author

Listed:
  • Jumpei Kida

    (Tokyo Institute of Technology)

  • Keiichi Imato

    (Tokyo Institute of Technology)

  • Raita Goseki

    (Tokyo Institute of Technology)

  • Daisuke Aoki

    (Tokyo Institute of Technology)

  • Masakazu Morimoto

    (Rikkyo University)

  • Hideyuki Otsuka

    (Tokyo Institute of Technology)

Abstract

Control over mechanochemical polymer scission by another external stimulus may offer an avenue to further advance the fields of polymer chemistry, mechanochemistry, and materials science. Herein, we demonstrate that light can regulate the mechanochemical behavior of a diarylethene-conjugated Diels–Alder adduct (DAE/DA) that reversibly isomerizes from a weaker open form to a stronger closed form under photoirradiation. Pulsed ultrasonication experiments, spectroscopic analyses, and density functional theory calculations support the successful photoregulation of the reactivity of this DAE/DA mechanophore, which is incorporated at the mid-chain of a polymer, and indicate that higher force and energy are required to cleave the closed form of the DAE/DA mechanophore relative to the open form. The present photoregulation concept provides an attractive approach toward the generation of new mechanofunctional polymers.

Suggested Citation

  • Jumpei Kida & Keiichi Imato & Raita Goseki & Daisuke Aoki & Masakazu Morimoto & Hideyuki Otsuka, 2018. "The photoregulation of a mechanochemical polymer scission," Nature Communications, Nature, vol. 9(1), pages 1-6, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-05996-7
    DOI: 10.1038/s41467-018-05996-7
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