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March 3, 2026Organic Letters1 citations

Thermodynamic Approach for Synthesizing 2Catenanes from Borate Ion-Containing Crown Ethers and a Macrocyclic Ammonium Ion

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MRM. Abdur RahamanTTTakumi TakizawaSMShinobu Miyagawa

Key Points

  • [2]Catenanes were successfully synthesized through thermodynamic control involving borate and macrocyclic ions.
  • The synthesis involved face-to-face complexes transitioning into [2]catenanes via ring-opening and closing reactions.
  • Utilizing bis-catechol and trimethyl borate, the method highlights the role of thermodynamics in molecular synthesis.
  • This study suggests that the developed approach may open avenues for creating advanced molecular structures.

Abstract

In this study, we synthesized 2catenanes from bis-catechol spiroborate ion-containing crown ethers and a macrocyclic ammonium ion through hydrogen bonding and ion pairing. The borate-forming reaction of bis-catechol and trimethyl borate in the presence of an amino-ether-based macrocycle (amino macrocycle) initially formed face-to-face complexes, which continuously converted into the corresponding 2catenanes via ring-opening and ring-closing reactions under thermodynamic control.

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Cite This Study

Rahaman et al. (2026) studied this question.

synapsesocial.com/papers/69a75ad8c6e9836116a21360https://doi.org/10.1021/acs.orglett.5c05459
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