Acid-activated motion switching of db24c8 between two discrete platinum(Ii) metallacycles

  • Yi Xiong Hu
  • , Gui Yuan Wu
  • , Xu Qing Wang
  • , Guang Qiang Yin
  • , Chang Wei Zhang
  • , Xiaopeng Li
  • , Lin Xu*
  • , Hai Bo Yang*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

The precise operation of molecular motion for constructing complicated mechanically interlocked molecules has received considerable attention and is still an energetic field of supramolec-ular chemistry. Herein, we reported the construction of two tris[2]pseudorotaxanes metallacycles with acid–base controllable molecular motion through self-sorting strategy and host–guest inter-action. Firstly, two hexagonal Pt(II) metallacycles M1 and M2 decorated with different host–guest recognition sites have been constructed via coordination-driven self-assembly strategy. The binding of metallacycles M1 and M2 with dibenzo-24-crown-8 (DB24C8) to form tris[2]pseudorotaxanes complexes TPRM1 and TPRM2 have been investigated. Furthermore, by taking advantage of the strong binding affinity between the protonated metallacycle M2 and DB24C8, the addition of trifluo-roacetic acid (TFA) as a stimulus successfully induces an acid-activated motion switching of DB24C8 between the discrete metallacycles M1 and M2. This research not only affords a highly efficient way to construct stimuli-responsive smart supramolecular systems but also offers prospects for precisely control multicomponent cooperative motion.

Original languageEnglish
Article number716
JournalMolecules
Volume26
Issue number3
DOIs
StatePublished - 1 Feb 2021

Keywords

  • Host–guest interaction
  • Metallacycle
  • Molecular motion
  • Pseudorotaxanes
  • Self-sorting

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