SPECTROELECTROCHEMISTRY OF THE MULTISTEP REDOX SYSTEM ((MU-BPYM)[RU(NH3)(4)](2))(N-6, IN A NONAQUEOUS MEDIUM(), N = 2)

Citation
F. Baumann et al., SPECTROELECTROCHEMISTRY OF THE MULTISTEP REDOX SYSTEM ((MU-BPYM)[RU(NH3)(4)](2))(N-6, IN A NONAQUEOUS MEDIUM(), N = 2), Inorganic chemistry, 37(4), 1998, pp. 658-660
Citations number
16
Categorie Soggetti
Chemistry Inorganic & Nuclear
Journal title
ISSN journal
00201669
Volume
37
Issue
4
Year of publication
1998
Pages
658 - 660
Database
ISI
SICI code
0020-1669(1998)37:4<658:SOTMRS>2.0.ZU;2-I
Abstract
The dinuclear complex ion {(mu-bpym)[Ru(NH3)(4)](2)}(4+), isolated as the tetrakis(hexafluorophosphate) salt, undergoes two reversible oxida tion and two reversible reduction processes in dry acetonitrile/0.1 M n-Bu4NPF6. The more accessible 3+, 4+, and 5+ states were characterize d spectroelectrochemically (UV/vis/NIR). The EPR-active 3+ form (g(1) = 2.0089, g(2) = 1.9967, g = 1.9308, [S] = 1.9785) is best described a s a complex between the bpym radical anion and two tetraamminerutheniu m(II) fragments. The 5+ state, on the other hand, is EPR silent down t o 3.5 K due to rapid relaxation involving metal-bared orbitals; it exh ibits a weak absorption in the 3200 cm(-1) region which may be associa ted with the intervalence-transfer (IT) transition. Although the quest ion of (de)localization in the mixed-valent 5+ species cannot be answe red from the available data, the comproportionation constant of 10(5.1 ) signifies strong metal-metal interaction under these conditions.