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Photo-controlled order-to-order host-guest self-assembly transfer for an afterglow effect with water resistance

  • Mouwei Liu
  • , Bin Wu
  • , Glib V. Baryshnikov
  • , Shen Shen
  • , Hao Sun
  • , Xinyan Gu
  • , Hans Agren
  • , Yifei Xu
  • , Qi Zou*
  • , Da Hui Qu
  • , Liangliang Zhu*
  • *Corresponding author for this work
  • Fudan University
  • Linköping University
  • Uppsala University
  • East China University of Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Due to the general incompleteness of photochemical reactions, the photostationary structure in traditional photo-controlled host-guest self-assembly transfer is usually disordered or irregular. This fact readily affects the photoregulation or improvement of related material properties. Herein, a photoexcitation-induced aggregation molecule, hydroxyl hexa(thioaryl)benzene (HB), was grafted into β-cyclodextrin to form a host-guest system. Upon irradiation, the excited state conformational change of HB can drive an order-to-order phase transition of the system, enabling the transfer of the initial linear nanostructure to a photostationary worm-like nanostructure with orderliness and crystallinity capability. Along with the photoexcitation-controlled phase transition, an afterglow effect was obtained from the films prepared by doping the host-guest system into poly(vinyl alcohol). The afterglow effect had a superior water resistance, which successfully overcame the general sensitivity of doped materials with the afterglow effect to water vapor. These results are expected to provide new insights for pushing forward chemical self-assembly from the light perspective, towards materials with superior and stable properties under light treatment.

Original languageEnglish
Pages (from-to)12569-12579
Number of pages11
JournalChemical Science
Volume15
Issue number31
DOIs
StatePublished - 2 Jul 2024
Externally publishedYes

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