Five-Coordinate Complexes [FeX(depe)2]BPh4, X = Cl, Br: Electronic Structure and Spin-Forbidden Reaction with N2
- 5 June 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 41 (13) , 3491-3499
- https://doi.org/10.1021/ic0111987
Abstract
The bonding of N(2) to the five-coordinate complexes [FeX(depe)(2)](+), X = Cl (1a) and Br (1b), has been investigated with the help of X-ray crystallography, spectroscopy, and quantum-chemical calculations. Complexes 1a and 1b are found to have an XP(4) coordination that is intermediate between square-pyramidal and trigonal-bipyramidal. Mössbauer and optical absorption spectroscopy coupled with angular overlap model (AOM) calculations reveal that 1a and 1b have (3)B(1) ground states deriving from a (xz)(1)(z(2))(1) configuration. The zero-field splitting for this state is found to be 30-35 cm(-1). In contrast, the analogous dinitrogen complexes [FeX(N(2))(depe)(2)](+), X = Cl (2a) and Br (2b), characterized earlier are low-spin (S = 0; Wiesler, B. E.; Lehnert, N.; Tuczek, F.; Neuhausen, J.; Tremel, W. Angew. Chem, Int. Ed. 1998, 37, 815-817). N(2) bonding and release in these systems are thus spin-forbidden. It is shown by density functional theory (DFT) calculations of the chloro complex that the crossing from the singlet state (ground state of 2a) to the triplet state (ground state of 1a) along the Fe-N coordinate occurs at r(C) = 2.4 A. Importantly, this intersystem crossing lowers the enthalpy calculated for N(2) release by 10-18 kcal/mol. The free reaction enthalpy Delta G degrees for this process is calculated to be 4.7 kcal/mol, which explains the thermal instability of N(2) complex 2a with respect to the loss of N(2). The differences in reactivity of analogous trans hydrido systems are discussed.Keywords
This publication has 11 references indexed in Scilit:
- New Developments in Nitrogen FixationAngewandte Chemie International Edition in English, 1998
- Influence of thetrans Substituent on N2 Bonding in Iron(ii)-Phosphane Complexes: Structure, Synthesis, and Properties of the Monomeric Adductstrans-[FeXN2(depe)2]BPh4, X=Cl, BrAngewandte Chemie International Edition in English, 1998
- Activation of Diazene and the Nitrogenase Problem: An Investigation of Diazene-Bridged Fe(II) Centers with Sulfur Ligand Sphere. 1. Electronic StructureJournal of the American Chemical Society, 1997
- Recent Advances in the Chemistry of Dinitrogen ComplexesChemical Reviews, 1995
- Complexes of tertiary phosphines with iron(II) and dinitrogen, dihydrogen, and other small moleculesJournal of Organometallic Chemistry, 1990
- Photochemical synthesis and reactions of FeH(C6H4PPhCH2CH2PPh2)(PPh2PCH2CH2PPh2)Inorganic Chemistry, 1983
- An MO theoretical study on the dications of tetrasulfur, tetraselenium, and tetratelluriumInorganic Chemistry, 1979
- Huckel theory and aromaticallyJournal of Chemical Education, 1974
- (μ‐Dinitrogen‐N,N)bis[bis(tricyclohexylphosphine)nickel(0)]Published by Wiley ,1974
- A new route to molecular nitrogen complexesJournal of the Chemical Society D: Chemical Communications, 1969