Login / Signup

N-H Bond Formation at a Diiron Bridging Nitride.

Shaoguang ZhangPeng CuiTianchang LiuQiuran WangThomas J LongoLaura M ThiererBrian C ManorMichael R GauPatrick J CarrollGeorgia C PapaefthymiouNeil C Tomson
Published in: Angewandte Chemie (International ed. in English) (2020)
Despite their connection to ammonia synthesis, little is known about the ability of iron-bound, bridging nitrides to form N-H bonds. Herein we report a linear diiron bridging nitride complex supported by a redox-active macrocycle. The unique ability of the ligand scaffold to adapt to the geometric preference of the bridging species was found to facilitate the formation of N-H bonds via proton-coupled electron transfer to generate a μ-amide product. The structurally analogous μ-silyl- and μ-borylamide complexes were shown to form from the net insertion of the nitride into the E-H bonds (E=B, Si). Protonation of the parent bridging amide produced ammonia in high yield, and treatment of the nitride with PhSH was found to liberate NH3 in high yield through a reaction that engages the redox-activity of the ligand during PCET.
Keyphrases
  • electron transfer
  • quantum dots
  • room temperature
  • visible light
  • reduced graphene oxide
  • smoking cessation
  • genetic diversity
  • neural network
  • perovskite solar cells