TY - JOUR
T1 - The synthesis and structural analysis of cis-beta-{(1,6-di(2'-pyridyl)(2,5-dibenzyl-2,5-diazahexane)(1,2-diazahexane)(1,2-benzoquinone diimine)ruthenium(II)} and related complexes
AU - Aldrich-Wright, Janice R.
AU - Fenton, Ronald
AU - Leverett, Peter
AU - Stephens, Frederick S.
AU - Williams, Peter A.
AU - Vagg, Robert S.
PY - 2007
Y1 - 2007
N2 - Several isomers are possible when N4-tetradentate ligands coordinate to form metal complexes. Here we report the synthesis and structural analysis of cis-β-{[1,6-di(20-pyridyl)(2,5-dibenzyl-2,5-diazahexane)(1,2-benzoquinone diimine)]ruthenium(II)} formed exclusively from the β-precusor, β-{[1,6-di(20-pyridyl)(2,5-dibenzyl-2,5-diazahexane) (dimethylsulfoxide)chloride] ruthenium(II)} hexaflourophosphate. Ruthenium(II) complexes synthesised from 1,6-di (20-pyridyl)-2,5-dibenzyl-2,5-diazahexane, produce only two isomers which can be separated by recrystallisation into α- and β-[Ru(picenbz2)(dmso)Cl]PF6 (where picenbz2 is 1,6- di(20-pyridyl)-2,5-dibenzyl-2,5-diazahexane). The distinctively different proton NMR spectra of the isomers are an especially convenient feature with which to assess separation. Isomeric structure of the precursor, α or β, is conserved upon coordination of a bidentate ligand, such as benzene-1,2-diamine, 4,5-dimethyl-benzene-1,2-diamine, naphthalene-2,3-diamine, 2,20-bipyridine, 1,10-phenanthroline or dipyrido[3,2-d:2030-f ]quinoxaline, to produce complexes of the type α- or β-[Ru(picenbz2)(bidentate)](PF6)2. The synthesis, separation and characterisation of the α- and β-precursors and the α- and β-[Ru(picenbz2)(bidentate)](PF6)2 complexes are reported. Moreover, the crystal structures have been determined for β-[Ru(picenbz2)(dmso)Cl]PF6.0.5H2O (C30H37N4O1.5F6PSClRu); it is triclinic, space group PÃÂÃ… , a = 9.987, b = 12.883, c = 14.287 , α = 72.11, β = 78.65, γ = 88.39ÃÆ'Ã"šÃ¢â‚¬Å¡ÃƒÆ’‚Ã"šÃ‚° and Z = 2 and β-[Ru(picenbz2)(bqdi)](PF6)2, (C34H38N6F12P2Ru) which is triclinic, space group PÃÂÃ… , with a = 10.129, b = 10.338, c = 19.587 , α = 104.42, �� = 93.36, γ = 92.00ÃÆ'Ã"šÃ¢â‚¬Å¡ÃƒÆ’‚Ã"šÃ‚° and Z = 2. The structures were determined at room temperature and refined by least-squares methods to R = 0.044 for 5109 and R = 0.075 for 3057 non-zero diffractometer data, respectively, for the dmso and bqdi species above.
AB - Several isomers are possible when N4-tetradentate ligands coordinate to form metal complexes. Here we report the synthesis and structural analysis of cis-β-{[1,6-di(20-pyridyl)(2,5-dibenzyl-2,5-diazahexane)(1,2-benzoquinone diimine)]ruthenium(II)} formed exclusively from the β-precusor, β-{[1,6-di(20-pyridyl)(2,5-dibenzyl-2,5-diazahexane) (dimethylsulfoxide)chloride] ruthenium(II)} hexaflourophosphate. Ruthenium(II) complexes synthesised from 1,6-di (20-pyridyl)-2,5-dibenzyl-2,5-diazahexane, produce only two isomers which can be separated by recrystallisation into α- and β-[Ru(picenbz2)(dmso)Cl]PF6 (where picenbz2 is 1,6- di(20-pyridyl)-2,5-dibenzyl-2,5-diazahexane). The distinctively different proton NMR spectra of the isomers are an especially convenient feature with which to assess separation. Isomeric structure of the precursor, α or β, is conserved upon coordination of a bidentate ligand, such as benzene-1,2-diamine, 4,5-dimethyl-benzene-1,2-diamine, naphthalene-2,3-diamine, 2,20-bipyridine, 1,10-phenanthroline or dipyrido[3,2-d:2030-f ]quinoxaline, to produce complexes of the type α- or β-[Ru(picenbz2)(bidentate)](PF6)2. The synthesis, separation and characterisation of the α- and β-precursors and the α- and β-[Ru(picenbz2)(bidentate)](PF6)2 complexes are reported. Moreover, the crystal structures have been determined for β-[Ru(picenbz2)(dmso)Cl]PF6.0.5H2O (C30H37N4O1.5F6PSClRu); it is triclinic, space group PÃÂÃ… , a = 9.987, b = 12.883, c = 14.287 , α = 72.11, β = 78.65, γ = 88.39ÃÆ'Ã"šÃ¢â‚¬Å¡ÃƒÆ’‚Ã"šÃ‚° and Z = 2 and β-[Ru(picenbz2)(bqdi)](PF6)2, (C34H38N6F12P2Ru) which is triclinic, space group PÃÂÃ… , with a = 10.129, b = 10.338, c = 19.587 , α = 104.42, �� = 93.36, γ = 92.00ÃÆ'Ã"šÃ¢â‚¬Å¡ÃƒÆ’‚Ã"šÃ‚° and Z = 2. The structures were determined at room temperature and refined by least-squares methods to R = 0.044 for 5109 and R = 0.075 for 3057 non-zero diffractometer data, respectively, for the dmso and bqdi species above.
KW - 1\
KW - 2-Benzoquinone diamine
KW - 5-diazahexane
KW - 5-dibenzyl-2\
KW - 6-Di(20-pyridyl)-2\
KW - N4-tetradentate
KW - ruthenium compounds
KW - stereospecific synthesis
KW - x-ray crystallography
UR - http://handle.uws.edu.au:8081/1959.7/35026
M3 - Article
SN - 0095-8972
JO - Journal of Coordination Chemistry
JF - Journal of Coordination Chemistry
ER -