Photo-controlled reversible multicolor luminescent supramolecular assembly by multicharged β-cyclodextrin

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The article describes the construction of a photo-controlled reversible multicolor luminescent supramolecular assembly on an agarose substrate by non-covalent interactions. The key components are:

  • Multicharged β-cyclodextrin (AMCD) and negatively charged tetraphenylethene (TPE) form a binary assembly AMCD@TPE through electrostatic interactions, enhancing TPE’s luminescence.
  • Adamantane-modified spiropyrane derivative (Adam-SP) is introduced to form a ternary assembly Adam-MC@AMCD@TPE through host-guest interactions.
  • The ternary assembly exhibits reversible photo-regulated multicolor luminescence from blue to red under alternating visible light and dark conditions, as well as thermal-responsive luminescence changes.
  • The ternary assembly is applied for photo-controlled multiple anti-counterfeiting.

This work provided a novel approach for constructing intelligent luminescent supramolecular assembly through cascade assembly.

Rong Zhang, Zhiyi Yu, Hengyi Zhang, Yu Liu (2025) Achieving photo-controlled reversible multicolor luminescent supramolecular assembly by multicharged β-cyclodextrin. Chinese Chemical Letters
111633. https://doi.org/10.1016/j.cclet.2025.111633

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