Dissociative and nondissociative pathways in the endo to exo isomerization of tetramethyl-o-xylylene complexes of ruthenium and osmium, ML3{η4-o-C6Me4(CH2)2} (M = Ru, L = PMe3; M = Os, L = PMe3, PMe2Ph).: Formation of hexamethylbenzene-1,2-diyl complexes by ligand addition to the exo-osmium complexes

被引:14
作者
Bennett, MA [1 ]
Bown, M
Hockless, DCR
McGrady, JE
Schranz, HW
Stranger, R
Willis, AC
机构
[1] Australian Natl Univ, Res Sch Chem, Canberra, ACT 0200, Australia
[2] Australian Natl Univ, Dept Chem, Canberra, ACT 0200, Australia
关键词
D O I
10.1021/om9804226
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Treatment of the (eta(6)-hexamethylbenzene)ruthenium(II) and -osmium(II) salts [M(O-2-CCF3)L-2(eta(6)-C6Me6)]PF6 (M = Ru, L = PMe3; M = Os, L = PMe3, PMe2Ph) in the presence of L with KO-t-Bu gives exclusively the endo- (tetramethyl-o-xylylene)metal(0) complexes ML3{eta(4)-endo-o-C6Me4(CH2)(2)}, endo-1, -2, and -3, respectively, in high yield; these-are protonated by an excess of triflic acid (CF3SO3H, TfOH) to give the (eta(6)-hexamethylbenzene)metal(II) salts [ML3(eta(6)-C6Me6)](OTf)(2) [M = Ru, L = PMe3 (4); M = Os, L = PMe3 (5); M = Os, L = PMe2Ph (6)). Complexes 4-6 revert to endo-1-3 on treatment with. KO-t-Bu, whereas for M=Ru, L=PMe2Ph the complexes [ML3(eta(6)-C6Me6)](2+) and [M(O2CCF3)L-2(eta(6)-C6-Me6)](+)/L react with KO-t-Bu to give exclusively the exo isomer, Ru(PMe2Ph)(3){eta(4)-exo-o-(CH2)(2)C6Me4} (exo-7). The endo complexes 1-3 are converted quantitatively into the corresponding exo isomers in toluene in the temperature range 65-106 degrees C, the process being first order in endo complex. Kinetics studies in the presence of PMe3 (for 1 and 2) or PMe2-Ph (for 3) indicate that two pathways are available: one depends on initial dissociation of L and proceeds through a bis(ligand) intermediate or intermediates, e.g., ML2{endo-o-C6-Me4(CH2)(2)} and ML2{exo-o-(CH2)(2)C6Me4}, and the other does not. The dissociative mechanism is predominant for M = Ru, L = PMe3, whereas the nondissociative or direct mechanism plays the dominant, possibly exclusive, role for M = Os, L = PMe3. The osmium(0) compound exo-2 adds PMe3 irreversibly to give the sigma-bonded (hexamethylbenzene-1,2-diyl)osmium(II) complex Os(PMe3)(4){kappa(2)-o-(CH2)(2)C6Me4} (8), whereas the corresponding PMe2Ph derivative 9 is in equilibrium with exo-3 and PMe2Ph and cannot be isolated; the ruthenium(0) compound exo-1 is inert toward PMe3. Density functional calculations on the model compounds ML3-{eta(4)-exo-o-(CH2)(2)C6H4} and ML4{kappa(2)-o-(CH2)(2)C6H4}(M = RU, Os; L = PH3) correctly reflect the observed stability order Os > Ru for the diyl complex but predict the latter to be more stable than the eta(4) complex far both elements. In this case, the usual computational simplification of replacing a tertiary phosphine by PH3 is probably unjustified, The molecular structures of the eta(4) complexes endo-3, exo-3, and exo-1 and of the diyl complex 8 have been determined by X-ray crystallography. The endo- to exo-o-xylylene isomerizations are compared with the intramolecular migrations that occur in Fe(CO)(3)(eta(4)-polyene) and Cr(CO)(3)(eta(6)-substituted-naphthalene) complexes.
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页码:3784 / 3797
页数:14
相关论文
共 63 条
[21]  
Hall S. R., 1992, XTAL3 2 REFERENCE MA
[22]   SYNTHESIS, CRYSTAL AND MOLECULAR-STRUCTURES, AND REACTIONS OF A BENZODICOBALTACYCLOHEXENE, A THERMALLY DERIVED MONONUCLEAR ORTHO-XYLYLENE COMPLEX, AND AN UNSYMMETRICAL PHOSPHINE-DERIVED DINUCLEAR COMPLEX [J].
HERSH, WH ;
HOLLANDER, FJ ;
BERGMAN, RG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (18) :5834-5846
[23]  
HISBERG B, CKS
[24]   TERTIARY PHOSPHINE ADDUCTS OF MANGANESE(II) DIALKYLS .2. SYNTHESIS, PROPERTIES, AND STRUCTURES OF MONOMERIC COMPLEXES [J].
HOWARD, CG ;
GIROLAMI, GS ;
WILKINSON, G ;
THORNTONPETT, M ;
HURSTHOUSE, MB .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1983, (12) :2631-2637
[25]   TRANSITION-METAL STABILIZED ORTHO-XYLYLENES - REACTIVITY OF THE NOVEL ORTHO-XYLYLENE COMPLEX RU(ETA-6-C6ME6)[ETA-4-C6ME4(CH2)2] [J].
HULL, JW ;
MANN, C ;
GLADFELTER, WL .
ORGANOMETALLICS, 1992, 11 (09) :3117-3121
[26]   SYNTHESIS, STRUCTURE, AND REACTIVITY OF RU(ETA6-C6ME6)[ETA4-C6ME4(CH)2] - AN UNUSUAL TRANSITION-METAL ORTO-XYLYLENE COMPLEX [J].
HULL, JW ;
GLADFELTER, WL .
ORGANOMETALLICS, 1982, 1 (12) :1716-1718
[27]  
JOHNSON BFG, 1974, TETRAHEDRON LETT, P3789
[28]   FLUXIONALITY IN (CYCLOHEPTATRIENE)IRON TRICARBONYL COMPLEXES [J].
KAREL, KJ ;
ALBRIGHT, TA ;
BROOKHART, M .
ORGANOMETALLICS, 1982, 1 (03) :419-430
[29]   CARBONYL-ETA-HEXAMETHYLBENZENE COMPLEXES OF OSMIUM - CARBON-HYDROGEN ACTIVATION BY (ETA-C6ME6)OS(CO)(H)2 [J].
KIEL, WA ;
BALL, RG ;
GRAHAM, WAG .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1990, 383 (1-3) :481-496
[30]   KINETIC AND THERMODYNAMIC STABILITIES OF THE GEOMETRIC ISOMERS OF (R3P)2RU(CO)2CL2 AND (R3P)3RU(CO)CL2 COMPLEXES [J].
KRASSOWSKI, DW ;
NELSON, JH ;
BROWER, KR ;
HAUENSTEIN, D ;
JACOBSON, RA .
INORGANIC CHEMISTRY, 1988, 27 (23) :4294-4307