Login / Signup

Unlocking the Metalation Applications of TMP-powered Fe and Co(II) bis(amides): Synthesis, Structure and Mechanistic Insights.

Alessandra LogalloLewis C H MaddockManting MuLisa GravoglNa JinMarconi N Peñas-DefrutosKarsten MeyerMax García-MelchorEva Hevia
Published in: Angewandte Chemie (International ed. in English) (2024)
Typified by LiTMP and TMPMgCl.LiCl, (TMP=2,2,6,6-tetramethylpiperidide), s-block metal amides have found widespread applications in arene deprotonative metalation. On the contrary, transition metal amides lack sufficient basicity to activate these substrates. Breaking new ground in this field, here we present the synthesis and full characterisation of earth-abundant transition metals M(TMP) 2 (M=Fe, Co). Uncovering a new reactivity profile towards fluoroarenes, these amide complexes can promote direct M-H exchange processes regioselectively using one or two of their basic amide arms. Remarkably, even when using a perfluorinated substrate, selective C-H metalation occurs leaving C-F bonds intact. Their kinetic basicity can be boosted by LiCl or NBu 4 Cl additives which enables formation of kinetically activated ate species. Combining spectroscopic and structural studies with DFT calculations, mechanistic insights have been gained on how these low polarity metalation processes take place. M(TMP) 2 can also be used to access ferrocene and cobaltocene by direct deprotonation of cyclopentadiene and undergo efficient CO 2 insertion of both amide groups under mild reaction conditions.
Keyphrases
  • transition metal
  • molecular docking
  • density functional theory
  • ionic liquid
  • molecular dynamics simulations
  • molecular dynamics
  • risk assessment
  • health risk
  • drinking water
  • water soluble
  • heavy metals