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Published September 17, 2012 | Published + Accepted Version + Supplemental Material
Journal Article Open

Mononuclear Five- and Six-Coordinate Iron Hydrazido and Hydrazine Species

Abstract

This article describes the synthesis and characterization of several low-spin iron(II) complexes that coordinate hydrazine (N_2H_4), hydrazido (N_2H_3^–), and ammonia. The sterically encumbered tris(di-meta-terphenylphosphino)borate ligand, [PhBP^(mter)_3]^−, is introduced to provide access to species that cannot be stabilized with the [PhBP^(Ph)_3]^− ligand ([PhBP^R_3]^− = PhB(CH_2PR_2)_3^–). Treatment of [PhBP^(mter)_3]FeMe with hydrazine generates the unusual 5-coordinate hydrazido complex [PhBP^(mter)_3]Fe(η^2-N_2H_3) (1), in which the hydrazido serves as an L_2X-type ligand. Upon coordination of an L-type ligand, the hydrazido shifts to an LX-type ligand, generating [PhBP^(mter)_3]Fe(L)(η^2-N_2H_3) (L = N_2H_4 (2) or NH_3 (3)). In contrast, treatment of [PhBP^(Ph)_3]FeMe with hydrazine forms the adduct [PhBP^(Ph)_3]Fe(Me)(η^2-N_2H_4) (5). Complex 5 is thermally unstable to methane loss, generating intermediate [PhBP^(Ph)_3]Fe(η^2-N_2H_3), which undergoes bimolecular coupling to produce {[PhBP^(Ph)_3]Fe}_2(μ-η^1:η^1-N_2H_4)(μ-η^2:η^2-N_2H_2). The oxidation of these and related hydrazine and hydrazido species is also presented. For example, oxidation of 1 or 5 with Pb(OAc)_4 results in disproportionation of the N_2H_x ligand (x = 3, 4), and formation of [PhBP^R_3]Fe(NH_3)(OAc) (R = Ph (9) and mter (11)).

Additional Information

© 2012 American Chemical Society. Received: August 2, 2012. Publication Date (Web): September 5, 2012. Dr. David VanderVelde, and Dr. Jeff Simpson are acknowledged for insightful discussions regarding the NMR spectroscopy of the compounds. Dr. Peter Müller, Dr. Michael Day, and Dr. Larry Henling are acknowledged for insightful discussions regarding X-ray crystallography. This work was generously supported by the NIH (GM-070757), and the Gordon and Betty Moore Foundation. Funding for the Caltech NMR facility was provided in part by the NIH (RR 027690). C.T.S. is grateful for an NSF graduate fellowship.

Attached Files

Published - ic301704f.pdf

Accepted Version - nihms405469.pdf

Supplemental Material - ic301704f_si_001.pdf

Supplemental Material - ic301704f_si_002.cif

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Created:
August 19, 2023
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