Substituierte halogenocarbonylmetallate des chroms, molybdäns und wolframs
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[1] D. Darensbourg,et al. A convenient synthesis of cis-Mo(CO)4L2 derivatives (L = Group 5a ligand) and a qualitative study of their thermal reactivity toward ligand dissociation , 1978 .
[2] F. R. Kreissl,et al. Übergangsmetall‐Carben‐Komplexe, XCVIII. Pentacarbonyl(halogenwasserstoff)wolfram‐Komplexe , 1977 .
[3] M. Wrighton,et al. Photosubstitution behavior of dicarbonyl(.eta.5-cyclopentadienyl)pyridinomanganese and -rhenium and related complexes , 1977 .
[4] W. A. Schenk. Substituierte halog nocarbonyl-metallate des molybd/:ans und wolframs , 1976 .
[5] D. Darensbourg,et al. Evidence for the fluxionality and structure in solution of intermediates of the type W(CO)4(L) (L = lewis base) , 1976 .
[6] D. Morse,et al. Photosubstitution reactivity of a series of pentacarbonylpyridinotungsten(0) complexes having ligand field or charge-transfer lowest excited states , 1976 .
[7] J. Atwood,et al. Cis labilization of ligand dissociation. 3. Survey of group 6 and 7 six-coordinate carbonyl compounds. The site preference model for ligand labilization effects , 1976 .
[8] R. Perutz,et al. Aspects of Organo-Transition-Metal Photochemistry and their Biological Implications , 1976 .
[9] M. Wrighton. Photochemistry of metal carbonyls , 1974 .
[10] M. Wrighton. Photoreactions of aminepentacarbonylmolybdenum(0) and -tungsten(0) , 1974 .
[11] P. S. Braterman,et al. Photochemistry of Fe(CO)3 [P(p-C6 H4 CH3)]2 and W(CO)4 [P(i-C3 H7)3]2 and the apparently anomalous behaviour of (cyclo-C4 H4)Fe(CO)3 , 1973 .
[12] T. L. Brown,et al. Kinetic study of amine substitution in pentacarbonylaminemolybdenum(0) complexes , 1973 .
[13] F. L. Moigne,et al. Synthèse de molécules organométalliques possédant un manganèse chiral , 1973 .
[14] D. Darensbourg,et al. Kinetic studies of thermal decomposition and substitution reactions of cis-Mo(CO)4[P(C6H5)3](amine) compounds. Competitive study of Lewis bases for the intermediate [Mo(CO)4P(C6H5)3] , 1973 .
[15] G. Schwenzer,et al. Photochemical substitution reactions of substituted Group VI metal carbonyls , 1972 .
[16] D. Darensbourg,et al. Infrared and kinetic studies of Group VI metal pentacarbonyl amine compounds , 1972 .
[17] G. Dobson,et al. Octahedral metal carbonyls. XXI. Carbonyl and metal-carbon stretching spectra of monosubstituted group VIB metal carbonyls☆☆☆ , 1972 .
[18] J. Chatt,et al. Improved preparation of tertiary phosphine and related substitution products of group VI metal carbonyls , 1971 .
[19] Richard A. Brown,et al. Octahedral metal carbonyls—XVIII triphenylbismuth derivatives of the group VIB metal carbonyls☆ , 1971 .
[20] Friedrich-Wilhelm Grevels,et al. Photochemistry of metal carbonyls, metallocenes, and olefin complexes , 1969 .
[21] D. Darensbourg,et al. Kinetics of the thermal decomposition and substitution reactions of molybdenum pentacarbonyl amine compounds , 1968 .
[22] P. F. Barrett,et al. Kinetics of some substitution reactions of the Group VI metal carbonyl halides , 1968 .
[23] P. F. Barrett,et al. Phosphine-substituted carbonyl halide complexes of chromium and molybdenum , 1968 .
[24] R. J. Angelici,et al. Infrared studies of amine, pyridine, and phosphine derivatives of tungsten hexacarbonyl , 1967 .
[25] F. Calderazzo,et al. Reactions of halogenopentacarbonyls of group VI metals with ligands , 1967 .
[26] H. D. Murdoch,et al. Isonitrile derivatives of chromium, molybdenum and tungsten carbonyls , 1966 .
[27] W. Strohmeier. Photochemische Substitutionen an Metallcarbonylen und deren Derivaten , 1964 .
[28] W. Strohmeier. Photochemical Substitutions on Metal Carbonyls and Their Derivatives , 1964 .
[29] H. Kaesz,et al. Spectroscopic Studies of the Complexes of Acrylonitrile and Acetonitrile with the Carbonyls of Chromium, Molybdenum, and Tungsten , 1963 .
[30] G. Dobson,et al. Infrared Spectra and Structures of Some Metal Hexacarbonyl Derivatives , 1963 .
[31] J. H. Wotiz,et al. Organic Derivatives of Chromium, Molybdenum and Tungsten Carbonyls , 1961 .
[32] W. Strohmeier,et al. Reaktionsmechanismus und Quantenausbeute bei der photochemischen Darstellung von Di‐Substitutionsprodukten der Metallhexacarbonyle , 1961 .
[33] W. Strohmeier,et al. Photochemische Darstellung von Pentacarbonylacetonitril‐wolfram und Tetracarbonyldiacetonitril‐molybdän und ‐wolfram , 1961 .
[34] K. Öfele,et al. Über Aromatenkomplexe von Metallen, XXXVII. Zur Aromatenkomplexbildung des Pyridins mit Chromhexacarbonyl , 1960 .