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Fully Delocalized Mixed-Valent Cu 1.5 Cu 1.5 Complex: Strong Cu-Cu interaction and Fast Electron Self-Exchange Rate Despite Large Structural Changes.

Yang LiuStefan G ReschHaowei ChenSebastian DechertSerhiy DemeshkoEckhard BillShengfa YeFranc Meyer
Published in: Angewandte Chemie (International ed. in English) (2022)
A flexible macrocyclic ligand with two tridentate {CNC} compartments can host two Cu ions in reversibly interconvertible states, Cu I Cu I (1) and mixed-valent Cu 1.5 Cu 1.5 (2). They were characterized by XRD and multiple spectroscopic methods, including EPR, UV/Vis absorption and MCD, in combination with TD-DFT and CASSCF calculations. 2 features a short Cu⋅⋅⋅Cu distance (≈2.5 Å; compared to ≈4.0 Å in 1) and a very high delocalization energy of 13 000 cm -1 , comparable to the mixed-valent state of the biological Cu A site. Electron self-exchange between 1 and 2 is rapid despite large structural reorganization, and is proposed to proceed via a sequential mechanism involving an active conformer of 1, viz. 1'; the latter has been characterized by XRD. Such electron transfer (ET) process is reminiscent of the conformationally gated ET proposed for biological systems. This redox couple is a unique pair of flexible dicopper complexes, achieving fast electron self-exchange closely related to the function of the Cu A site.
Keyphrases
  • aqueous solution
  • metal organic framework
  • electron transfer
  • molecular docking
  • molecular dynamics
  • molecular dynamics simulations
  • sensitive detection