A FACILE AND PREFERENTIAL SYNTHESIS OF THE COMPLEXES, CIS-TRANS-CIS-RU-II[NC5H4-N=N-C6H4(R)](2) (R = H, O-ME CL, M-ME/CL-,CL- P-ME/CL) - SYNTHESIS, SPECTROSCOPIC CHARACTERIZATION AND ELECTRON-TRANSFER PROPERTIES/
P. Munshi et al., A FACILE AND PREFERENTIAL SYNTHESIS OF THE COMPLEXES, CIS-TRANS-CIS-RU-II[NC5H4-N=N-C6H4(R)](2) (R = H, O-ME CL, M-ME/CL-,CL- P-ME/CL) - SYNTHESIS, SPECTROSCOPIC CHARACTERIZATION AND ELECTRON-TRANSFER PROPERTIES/, Polyhedron, 17(11-12), 1998, pp. 1913-1922
A group of seven complexes of the type ctc-(RuL2Cl2)-L-II (2a-2g) (L =
NC5H4-N=N-C6H5(R), R = H, o-Me/Cl, m-Me/Cl, p-Me/Cl and ctc = cic-tra
ns-cis with respect to chlorides, pyridine and azo nitrogens, respecti
vely) have been synthesized and characterized. The complexes are diama
gnetic (Ru-II, t(2g)(6), S = 0) and electrically neutral. The molecula
r geometry of the complexes (2) in solution has been established by H-
1 NMR spectroscopy. They exhibit a strong metal to ligand charge-trans
fer band in the range 582-603 nm and intra ligand pi-pi transition ne
ar 320 nm. In acetonitrile solution the complexes display reversible r
uthenium(II) reversible arrow ruthenium(III) oxidation couples in the
range 1.02 --> 1.36 V vs SCE. Two successive quasi-reversible ligand r
eductions are observed for each complex in the ranges -0.42 --> -0.60
V and -0.68 --> -0.85 V vs SCE, respectively. The complexes 2a and 2e
have been oxidized tb the corresponding trivalent species (3a and 3e)
by using HNO3 as oxidizing agent and isolated in solid state as perchl
orate salts. Complexes are one-electron paramagnets (Ru-III, t(2g)(5),
S = 1/2) and show 1:1 conductivity in acetonitrile solution. The pres
ence of perchlorate counter ion in the complexes has been evidenced by
the strong infrared bands near 1100 and 600 cm(-1). Complexes exhibit
a strong ligand to metal charge-transfer band near 530 nm and intra l
igand pi-pi transition near 370 nm. In glassy condition (77 K) comple
xes display rhombic EPR spectra corresponding to the distorted octahed
ral geometry. (C) 1998 Elsevier Science Ltd. All rights reserved.