S. Bhattacharyya et al., Nickel(II) in an N4S donor environment: An unprecedented alcoholysis reaction through the activation of a carbon-nitrogen single bond, INORG CHEM, 38(4), 1999, pp. 633-638
Pentadentate N4S ligands based on methyl 2-aminocyclopent-1-ene-1-dithiocar
boxylate with flexible pyrazolyl arms (Me(2)pzCH(2))(2)NC2H3RNHC5H6CSSCH3 (
R = H, Hmmecd and R = CH3, Hmmpcd) undergo a nickel(II)induced alcoholysis
reaction through the activation of a saturated C-N bond linkage. The produc
ts obtained are square-planar complexes 1-4 containing a modified ligand st
ructure possessing an N3S donor set and a pendant arm that holds the alkoxy
group provided by the solvent. [Ni(N3S)-CH2OMe]ClO4 1 crystallizes in the
triclinic space group P (1) over bar with a = 10.4886(5) Angstrom, b = 10.7
06(1) Angstrom, c = 11.487(1) Angstrom, alpha = 108.784(4)degrees, beta = 1
08.887(6)degrees, gamma = 95.139(6)degrees, V = 1128.0(4) Angstrom(3), and
Z = 2; while [Ni(N3S)'-CH2 OPrn]ClO4 4 has the monoclinic space group P2(1)
/n with a = 8.875(2) Angstrom, b = 18.629(2) Angstrom, c = 15.399(2) Angstr
om, beta = 91.37(2)degrees, V = 2545(1) Angstrom(3), and Z = 4 per unit cel
l. Complexes 1-4 with acyclic ligand environments have interesting electroc
hemical behavior in acetonitrile, involving a reversible Ni(II)/Ni(I) reduc
tion, E-1/2 Ca -1.0 V, and a Ni(II)/Ni(III) irreversible oxidation, E-pa ca
. 1.0 V vs Ag/AgCl as the reference. The coulometrically reduced solution o
f 2 displays a rhombic EPR spectrum at 77 K characteristic of nickel(I) wit
h g(1) = 2.217, g(2) = 2.170, and g(3) = 2.054.