4.8 Article

Reactivity of Hydride Bridges in High-Spin [3M-3(μ-H)] Clusters (M = FeII, CoII)

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 137, Issue 33, Pages 10610-10617

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.5b05204

Keywords

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Funding

  1. University of Florida
  2. ACS Petroleum Research Fund [ACS-PRF 52704-DNI3]
  3. National Science Foundation [CHE-1464876, CHE-1048604, CHE-0821346]
  4. Labex ARCANE [ANR-11-LABX-0003-01]
  5. Direct For Mathematical & Physical Scien
  6. Division Of Chemistry [1464876] Funding Source: National Science Foundation

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The designed [3M-3(mu-H)] clusters (M = Fe-II, Co-II) Fe3H3L (1-H) and Co3H3L (2-H) [where L3- is a tris(beta-diketiminate) cyclophane] were synthesized by treating the corresponding M3Br3L complexes with KBEt3H. From single-crystal X-ray analysis, the hydride ligands are sterically protected by the cyclophane ligand, and these complexes selectively react with CO2 over other unsaturated substrates (e.g., CS2, Me3SiCCH, C2H2, and CH3CN). The reaction of 1-H or 2-H with CO2 at room temperature yielded Fe-3(OCHO)(H)(2)L (1-CO2) or Co-3(OCHO)(H)(2)L (2-CO2), respectively, which evidence the differential reactivity of the hydride ligands within these complexes. The analogous reactions at elevated temperatures revealed a distinct difference in the reactivity pattern for 2-H as compared to 1-H; Fe-3(OCHO)(3)L (1-3CO(2)) was generated from 1-H, while 2-H afforded only 2-CO2.

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