Literature DB >> 20179843

Carbonate formation within a nickel dimer: synthesis of a coordinatively unsaturated bis(mu-hydroxo) dinickel complex and its reactivity toward carbon dioxide.

Jeffrey P Wikstrom1, Alexander S Filatov, Elena A Mikhalyova, Michael Shatruk, Bruce M Foxman, Elena V Rybak-Akimova.   

Abstract

The tridentate aminopyridine ligand bearing a bulky tert-butyl substituent at the amine nitrogen, tert-butyl-dipicolylamine (tBuDPA), occupies three coordination sites in six-coordinate complexes of nickel(ii), leaving the remaining three sites available for additional ligand binding and activation. New crystallographically characterized complexes include two mononuclear species with 1:1 metal:ligand complexation: a trihydrate solvate (1.3H(2)O) and a monohydrate biacetonitrile solvate (1.H(2)O.2CH(3)CN). Complexation in the presence of sodium hydroxide results in a bis(mu-hydroxo) complex (2), the bridging hydroxide anions of which are labile and become displaced by methoxide anions in methanol solvent, affording bis-methoxo-bridged (4). Nickel(II) centers in 2 are five-coordinate and antiferromagnetically coupled (with J = -31.4(5) cm(-1), H = -2JS(1)S(2), in agreement with Ni-O-Ni angle of 103.7 degrees). Bridging hydroxide or alkoxide anions in coordinatively unsaturated dinuclear nickel(II) complexes with tBuDPA react as active nucleophiles. 2 readily performs carbon dioxide fixation, resulting in the formation of a bis(mu-carbonato) tetrameric complex (3), which features a novel binding geometry in the form of an inverted butterfly-type nickel-carbonate core. Temperature-dependent magnetic measurements of tetranuclear carbonato-bridged revealed relatively weak antiferromagnetic coupling (J(1) = -3.1(2) cm(-1)) between the two nickel centers in the core of the cluster, as well as weak antiferromagnetic pairwise interactions (J(2) = J(3) = -4.54(5) cm(-1)) between central and terminal nickel ions.

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Year:  2010        PMID: 20179843     DOI: 10.1039/b916832j

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  2 in total

1.  Kinetics and mechanistic analysis of an extremely rapid carbon dioxide fixation reaction.

Authors:  Deguang Huang; Olga V Makhlynets; Lay Ling Tan; Sonny C Lee; Elena V Rybak-Akimova; R H Holm
Journal:  Proc Natl Acad Sci U S A       Date:  2011-01-10       Impact factor: 11.205

2.  New coordination features; a bridging pyridine and the forced shortest non-covalent distance between two CO32- species.

Authors:  V Velasco; D Aguilà; L A Barrios; I Borilovic; O Roubeau; J Ribas-Ariño; M Fumanal; S J Teat; G Aromí
Journal:  Chem Sci       Date:  2014-10-08       Impact factor: 9.825

  2 in total

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