Intramolecular Iron-Mediated C–H Bond Heterolysis with an Assist of Pendant Base in a [FeFe]-Hydrogenase Model

  • Dehua Zheng (1431199)
  • Ning Wang (108353)
  • Mei Wang (130842)
  • Shengda Ding (1711663)
  • Chengbing Ma (1711666)
  • Marcetta Y. Darensbourg (1431775)
  • Michael B. Hall (1341369)
  • Licheng Sun (1306302)
Publication date
December 2014

Abstract

Although many metalloenzymes containing iron play a prominent role in biological C–H activation processes, to date iron-mediated C­(sp<sup>3</sup>)–H heterolysis has not been reported for synthetic models of Fe/S-metalloenzymes. In contrast, ample precedent has established that nature’s design for reversible hydrogen activation by the diiron hydrogenase ([FeFe]-H<sub>2</sub>ase) active site involves multiple irons, sulfur bridges, a redox switch, and a pendant amine base, in an intricate arrangement to perform H–H heterolytic cleavage. In response to whether this strategy might be extended to C–H activation, we report that a [FeFe]-H<sub>2</sub>ase model demonstrates iron-mediated intramolecular C–H heterolytic cleavage via an agostic C–H i...

Extracted data

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