Reduction of nitric oxide by tetramesityliridium(IV) and cobaltocene. Reactions of hyponitrite complexes and of the ether [Co(η5-C5H5)(η4-C5H5)](µ-O-exo) with nitroalkanes, acids and amines
Abstract
The interactions of either Ir(mes)4(mes = C6H2Me3-2,4,6) or Co(cp)2(cp =η5-C5H5) with NO in light petroleum gave unstable solids the IR spectra of which allow them to be formulated as hyponitrite complexes, e.g.[Co(cp)2]2(N2O2)1; their reaction with MeNO2 is described. The compound Co(cp)2 with either NO or Ag2N2O2 in toluene gave N2O and the very reactive ether [Co(cp)(η4-C5H5)]2(µ-O-exo)2. This reacts with nitroalkanes where the product depends on the nature of the nitroalkane. Nitromethane produced both Co(cp)2+ CH2NO2–·H2O 3 and [Co(cp)(η4-C5H5)]2[(µ-CH(NO2)-exo]4, while Me2CH(NO2) gave Co(cp)[η4-C5H5(CMe2NO2)-exo] and EtNO2 corresponding species to 3 and 4(i.e.6 and 7). Reactions of 2 with alcohols or phenylacetylene gave mononuclear species of the same type as 4; treatment with NH2Ph or NHPh2 also gave similar exo complexes 8 and 9 respectively. All these exo species reacted with CHCl3 to give the exo-CCl3 compound by facile C–C bond cleavage. Mechanisms for the various reactions are discussed. The structures of compounds 2–4, 8 and 9 have been confirmed by X-ray crystallography: 2 and 4 contain Co(cp)(η4-C5H5) moieties bridged by oxygen or CH(NO2) groups while 8 and 9 are monomers with exo-NHPh or -NPh2 groups. In all cases but one (2) there are near-eclipsed C5CoC5 geometries; for one of the cobalts in 2 there is a twist of ca. 16° from the eclipsed configuration. Compound 3 has Co(cp)2+ and CH2NO2– ions the latter being involved in strong hydrogen bonding with the H2O molecule also present in the lattice. In both 8 and 9 there is structural evidence for π interaction between p lone pairs on the planar nitrogen atom and the π system of a phenyl ring.