JACS Au. 2026 Apr 30;6(5):2871-2880.doi: 10.1021/jacsau.6c00216.(IF:8.5).

本文采用的英格恩产品: CCAA细胞凋亡检测试剂盒(PI)

One Coordination Cage, Many Pathways: Multiple Stimuli Drive Reversible Transformations

Affiliations

  • 1 Univ Angers, CNRS, MOLTECH-ANJOU, F-49000 Angers, France.
  • 2 Laboratoire CEMCA UMR-CNRS 6521, Université de Bretagne Occidentale, 6 Avenue Victor Le Gorgeu, F-29200 Brest, France.
  • 3 Université de Lorraine, LCP-A2MC, F-57000 Metz, France.
  • 4 University of Applied Sciences and Arts of Southern Switzerland, Campus Est, Via la Santa 1, CH-6962 Lugano, Switzerland.
  • 5 Nantes Université, CNRS, CEISAM UMR 6230, F-44000 Nantes, France.
  • 6 Institut Universitaire de France (IUF), F-75005 Paris, France.

Abstract

A trigonal prismatic coordination cage endowed with a large cavity is built by self-association of a bis-(rhodium) complex and a planar triazatruxene-based ligand. The remarkable versatility of this molecular building in promoting reversible structural transformations is demonstrated through manipulating three orthogonal external stimuli, i.e., cage concentration, guest identity, and pH. Four distinct stable discrete structures can be formed on-demand: a monomeric cage, two distinct host-guest complexes, and a mechanically interlocked cage dimer, and all these structures are fully and readily interconvertible. The cage uniquely couples (i) selective double guest encapsulation, (ii) stimulus-controlled reversible catenation, and (iii) pH-triggered pairwise guest release-uptake. The resulting structures were comprehensively characterized using 1D and 2D NMR spectroscopy, high-resolution mass spectrometry, theoretical calculations, and, in most cases, single-crystal X-ray diffraction.

Keywords: coordination cages; pH; self-assembly; stimuli-induced transformations; triazatruxene.

https://doi.org/10.1021/jacsau.6c00216

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