4.5 Article

An unexpected cluster opening upon the formation of electronically unsaturated η3-(cyclooctenyl)metallacarboranes of rhodium(III) and iridium(III) with sterically reduced [(PhCH2)2C2B9H9]2- ligand

Journal

JOURNAL OF ORGANOMETALLIC CHEMISTRY
Volume 694, Issue 11, Pages 1727-1735

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jorganchem.2009.01.014

Keywords

Closo- and pseudocloso-metallacarboranes of rhodium and iridium; Crystal structures; NMR spectroscopy; EXSY spectroscopy; DFT calculations; Bader's theory

Funding

  1. Russian Foundation of Basic Research [06-03-32172, 0703-00631]
  2. Program of Basic Research

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The room-temperature metallation reactions of the K+ salt of the [7,8-(PhCH2)2-7,8-nido-C2B9H10] anion (1) with the COD-metal mu-chloride dimers [(eta(4)-C8H12)(2)Rh-2(mu-Cl)(2)] (2) and [(eta(4)-C8H12)(2)Ir-2(mu-Cl)(2)] (3) in benzene/ethanol solution gave formally 16-electron pseudocloso-type complexes with the eta(3)-cyclooctenyl ligand at the metal vertices,[3-{(1-3-eta(3))-C8H13}-1,2-(PhCH2)(2)-pseudocloso-3,1,2-MC2B9H9] [4, M = Rh(III); 5, M = Ir(III)]. No evidence supporting the existence of an agostic C-H center dot center dot center dot M bonding interaction in these compounds was obtained either from the crystallographic or the phase-sensitive 2- D [H-1-H-1] NOESY/EXSY studies of 4. The extraordinary stability of complexes 4 and 5 can therefore be associated with their cage-deformed cluster structures, where electronically-deficient (16-electron) metal centers are believed to be stabilized by additional electron density released from the polyhedral C-C bond cleavage. DFT solid-state calculations performed for closo (18-electron) and pseudocloso (16-electron) Rh(III) complexes, [3-(eta(5)-C5Me5)-1,2-(PhCH2)(2)-closo-3,1,2-RhC2B9H9] (6, C-C, 1.7397 angstrom) and [3-{(1-3-eta(3))- C8H13}-1,2-(4'-MeC6H4)(2)-pseudocloso-3,1,2-RhC2B9H9] (9,C center dot center dot center dot C, 2.420(2) angstrom), showed that the electron density transfer from the carborane moiety to the rhodium center is marginally greater for complex 9, in accordance with the idea that electronics rather than sterics play a crucial role in the stabilization of 16-electron pseudocloso-metallacarborane species. (C) 2009 Elsevier B.V. All rights reserved.

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