4.6 Article

Unravelling Enzymatic Features in a Supramolecular Iridium Catalyst by Computational Calculations

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 28, 期 57, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202201970

关键词

C-H functionalization; DFT calculations; enzyme mimics; iridium; supramolecular catalysis

资金

  1. Spanish MINECO [PGC2018097722-B-I00, PID2021-127423NB-I00]
  2. CNRS
  3. Universite de Rennes 1
  4. Agence Nationale de la Recherche [ANR-19CE07-0039]
  5. MINECO [PID2019106830GB-I00, MDM-2017-0767]

向作者/读者索取更多资源

This study presents a non-biological catalyst that binds substrates via the induced fit model, with features reminiscent of enzymes. The research also reveals new elementary catalytic steps.
Non-biological catalysts following the governing principles of enzymes are attractive systems to disclose unprecedented reactivities. Most of those existing catalysts feature an adaptable molecular recognition site for substrate binding that are prone to undergo conformational selection pathways. Herein, we present a non-biological catalyst that is able to bind substrates via the induced fit model according to in-depth computational calculations. The system, which is constituted by an inflexible substrate-recognition site derived from a zinc-porphyrin in the second coordination sphere, features destabilization of ground states as well as stabilization of transition states for the relevant iridium-catalyzed C-H bond borylation of pyridine. In addition, this catalyst appears to be most suited to tightly bind the transition state rather than the substrate. Besides these features, which are reminiscent of the action modes of enzymes, new elementary catalytic steps (i.e. C-B bond formation and catalyst regeneration) have been disclosed owing to the unique distortions encountered in the different intermediates and transition states.

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