F. Meyer et al., A DINUCLEAR NICKEL(II) COMPLEX WITH READILY ACCESSIBLE COORDINATION SITES AND ADDITIONAL N-FUNCTIONAL GROUPS IN PROXIMITY TO THE BIMETALLICCORE, Inorganic chemistry, 37(6), 1998, pp. 1213-1218
A series of pyrazolate-based dinuclear Ni(II) complexes relevant to th
e active site of urease are reported. Deprotonation of HL1 [HL1 = 3,5-
bis(R2NCH2)-pyzH; R2N = Me2N(CH2)(3)NMe] by means of 1 equiv of BuLi a
nd subsequent reaction with 2 equiv of [Ni(H2O)(6)](ClO4)(2) in the pr
esence of (NEtPr2)-Pr-i affords the dinuclear complex [(LNi2)-Ni-1(OH)
(MeCN)(2)](ClO4)(2) (1). This is shown crystallographically to contain
two five-coordinate nickel ions bridged by both the pyrazolate and a
hydroxide, with an acetonitrile solvent molecule bound to each metal c
enter. When HL2 is employed {HL2 = 3,5-bis(R2NCH2)-pyzH; R2N = [Me2N(C
H2)(3)](2)N}, the additional ligand side arms act as proton accepters
forming an intramolecular N .. H .. N bridge to yield the complex [(HL
Ni2)-Ni-2(OH)-(MeCN)(2)](ClO4)(3) (2), whose basic bimetallic framewor
k is essentially identical to 1. The two Ni(II) centers in 2 exhibit s
trong antiferromagnetic coupling (J = -46.7 cm(-1)). The labile aceton
itrile donors in 2 are easily replaced by either neutral ligands such
as dmf or anions such as thiocyanate, giving rise to the formation of
complexes [(HLNi2)-Ni-2(OH)(dmf)(2)] (ClO4)(3) (3) and [(HLNi2)-Ni-2(O
H)(NCS)(2)](ClO4) (4), respectively, where the overall dinuclear frame
work of 2 remains unchanged upon the substitution reaction.