Synthese kationischer ?2-Phosphinocarben-Komplexe des Molybdns und Wolframs
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[1] A. Schier,et al. Zirconium complexes with phosphinomethanide ligands: syntheses, reactivity, and x-ray structure determinations , 1994 .
[2] Ian D. Williams,et al. New (.eta.-C5Me5)M(PR2)x complexes (M = tantalum, molybdenum, and tungsten): reversible P-H bond activation, sp3 C-H bond activation, and P-C bond formation , 1993 .
[3] M. D. Fryzuk,et al. Thermal and photochemical transformations of organoiridium phosphide complexes. Mechanistic studies on carbon-phosphorus bond formation to generate cyclometalated hydride complexes by .alpha.-hydride abstraction , 1991 .
[4] R. Sanner,et al. Competitive ligand CH bond activations: ring- and phosphine-metallated forms of (C5Me5)Ta(PMe3)2 , 1991 .
[5] J. Hartwig,et al. Inter- and intramolecular carbon-hydrogen bond forming and cleavage reactivity of two different types of poly(trimethylphosphine)ruthenium intermediates , 1991 .
[6] C. Housecroft,et al. Reactions of (.eta.-C5Me5)Ta(PMe3)(H)2(.eta.2-CHPMe2) and nature of the .eta.2-CHPMe2 ligand , 1991 .
[7] D. Gervais,et al. Substituted cyclopentadienyl phosphinomethyl complexes of zirconium. Synthesis, chemical characteristics, complexation with rhodium complexes, and catalytic properties. Molecular and crystal structure of (.eta.5-tert-BuC5H4)2Zr(CH2PPh2)2[Rh2(.mu.-S-tert-Bu)2(CO)2] , 1990 .
[8] F. Kreissl,et al. Darstellung und Struktur kationischer η2-Thiocarbenkomplexe von Molybdän und Wolfram / Synthesis and Structure of Cationic η2-Thiocarbene Complexes of Molybdenum and Tungsten , 1990 .
[9] R. Boese,et al. Zur Reaktivität von Phosphaalkenyl‐ und Phosphavinyliden‐Komplexen des Molybdäns und Wolframs gegenüber dem Schwefelylid Me2S(O)=CH2 Röntgenstrukturanalyse von , 1990 .
[10] E. Lindner,et al. Darstellung und eigenschaften von und reaktionen mit metallhaltigen heterocyclen LXVIII. Phosphidomanganate als bausteine zur synthese von Phosphamanganacyclopropanen mit carben- und phosphiniden einheiten☆ , 1989 .
[11] L. Dahlenburg,et al. Oligophosphan-liganden: XXXI. Untersuchungen zur CH-aktivierung durch d6-ML5-komplexfragmente des molybdäns: Synthese und reaktivität der hydridoderivate MoH2(PMe3)2(pp2), MoH4(PMe3)(pp2) und MoH(CH2PMe2)(PMe3)(pp2) (pp2 = MeP(CH2CH2CH2PMe2)2) , 1989 .
[12] W. Hiller,et al. Darstellung und Eigenschaften von und Reaktionen mit metallhaltigen Heterocyclen, LXIII. Phosphamolybdacyclopropane mit Carben‐ und Phosphiniden‐Bausteinen , 1989 .
[13] G. Müller,et al. Metalladiphosphabutadiene complexes: preparation, reactions, and X-ray structure determination of {Cp(CO)2M[(RP)2CH]} (M=Mo, R=2.4.6-tBu3C6H2) and {Cp(CO)2W[(RP)2CH]Fe(CO)3} , 1989 .
[14] R. Bergman,et al. Synthesis and chemistry of a dinuclear iridium bis-.mu.-oxo complex. Observation of oxygen transfer and phosphorus-carbon bond cleavage , 1988 .
[15] A. Sacco,et al. Syntheses and structures of 2-diphenylphosphinomethylenide-6-diphenylphosphinomethylenepyridine complexes of palladium(II) and platinum(II); crystal structures of [PtCl2-(CHPPH2)-6-(CH2PPh2)pyridine] and [Pd(COOMe)2-(CHPPh2)-6-(CH2PPh2)pyridine] , 1988 .
[16] F. R. Kreissl,et al. Übergangsmetallketen-Verbindungen, XXXII [1] Darstellung kationischer η2 -Phosphinocarbenkomplexe durch Decarbonylierung von Wolframa-phospha-bicyclo[1.1.0]butanon-hexafluorophosphaten / Compounds of Transition Metal Ketenes, XXXII [1] Synthesis of Cationic η2 -Phosphinocarbene Complexes via Decarbo , 1988 .
[17] M. Wolfgruber,et al. Übergangsmetalleten-Verbindungen: XXXI. Addition von Dimethyichlorphosphin an die MetallKohlenstoffDreifachbindung, eine neuartige CC-Kupplungsreaktion , 1988 .
[18] J. Fischer,et al. Reaction of a terminal phosphinidene complex with a carbyne complex. Synthesis and X-ray crystal structure of a metallaphosphirene , 1988 .
[19] Malcolm L. H. Green,et al. Reduction of pentachlorotantalum in pure trimethylphosphine: the synthesis of compounds containing the Ta-η2-CHPMe2 group: crystal structure of [Ta(η2-CHPMe2)(η-C4H6)(PMe3)2Cl] , 1987 .
[20] Sangsoo Kim,et al. Reactions of the thiocarbyne [HB(pz)3](CO)2W(.tplbond.CSMe) and thiocarbene [HB(pz)3](CO)2W[.eta.2-CH(SMe)]+ complexes with phosphines , 1986 .
[21] R. J. Angelici,et al. Reactions of the thiocarbene complex [HB(pz)3](CO)2W[.eta.2-CH(SMe)]+ with sulfur, carbon, and nitrogen nucleophiles , 1986 .
[22] F. R. Kreissl,et al. Schrittweise MeS⊕‐Addition an eine Metall‐Kohlenstoff‐Dreifachbindung ‐ ein neuartiger Reaktionstyp in der Chemie von Carbinkomplexen , 1986 .
[23] F. Kreissl,et al. Stepwise Addition of MeS⊕ to a Metal‐Carbon Triple Bond—A New Type of Reaction in the Chemistry of Carbyne Complexes , 1986 .
[24] E. Lindner,et al. Preparation, properties, and reactions of metal-containing heterocycles. 51. Three- and five-membered phosphacobaltacycloalkanes , 1986 .
[25] L. Hubert-Pfalzgraf,et al. Facile access to methyl tantalum derivatives by unprecedented phosphorus—methyl bond cleavage of dimethylphenylphosphane , 1986 .
[26] H. Werner,et al. Basische metalle: LIII. Ruthenium- und osmium-komplexe mit dem dimethylphosphinomethanid-anion als liganden , 1985 .
[27] P. Seidler,et al. Inter- and intramolecular oxidative addition of phosphine, methane, alkane, and alkene carbon-hydrogen bonds to rhenium , 1985 .
[28] A. Rheingold,et al. (PMe3)3MS7(M = Ru, Os): The First Polysulfido Metal Complexes with a Tridentate S2 nn⊖ Ligand , 1984 .
[29] H. Werner,et al. (PMe3)3MS7 (M=Ru, Os): Die ersten Polysulfidometall-Komplexe mit einem dreizähnigen Sn2○--Liganden , 1984 .
[30] F. R. Kreissl,et al. Übergangsmetallketen-verbindungen: XXIV. Synthese eines η2 -phosphinocarbenkomplexes durch decarbonylierung von [1-carbonyl-1-(η5-cyclopenta-dienyl)-2,2-diphenyl-s-methyl-1-trimethylphosphin-1-wolframa-2-phosphabicyclo[1.1.0] butan-4-on] -hexafluorophosphat , 1984 .
[31] W. Sieber,et al. Transition-metal ketenes. 21. Conversion of .eta.2-ketenyl complexes into novel cations with a tungstaphosphabicyclo[1.1.0]butanone unit. Synthesis and structure , 1984 .
[32] John A. Gladysz,et al. Reaktionen von Diphenyl(trimethylsilyl)phosphan mit Alkyl(pentacarbonyl)mangan; Synthese der Ylidkomplexe unter Beteiligung einer CO‐Einschiebung , 1984 .
[33] J. Gladysz,et al. Reactions of Diphenyl(trimethylsilyl)phosphane with Alkyl(pentacarbonyl)manganese; Synthesis of the Ylide Complexes and a New Driving Force for CO Insertion , 1984 .
[34] H. H. Karsch. Komplexe mit alkylsubstituierten Phosphinomethanen und ‐methaniden, VII1). Mono‐ und Diphosphinomethanide als Chelatliganden in Eisen‐, Cobalt‐ und Nickelkomplexen , 1984 .
[35] R. Schrock,et al. Alkylidene hydride complexes of tantalum and the polymerization of ethylene by diiodotris(trimethylphosphine)hydroneopentylidenetantalum [Ta(CHCMe3)(H)(PMe3)3I2] , 1983 .
[36] E. Fischer,et al. Synthesis and Structure of (CO)4W[C(NEt2)PMePh], A Novel Cyclic Carbene Complex , 1983 .
[37] F. Cotton,et al. Two reactions of bis(diphenylphosphino)acetylene with Ta2Cl6(SMe2)3. Dinuclear products with coupled acetylenes and P-Ta-C or P-Ta:C rings , 1982 .
[38] P. Garrou. .DELTA.R-ring contributions to phosphorus-31 NMR parameters of transition-metal-phosphorus chelate complexes , 1981 .
[39] H. Hope,et al. Phosphinomethyl complexes of zirconium(IV): synthesis, reduction, and complexation to a second transition metal , 1980 .
[40] H. Schmidbaur,et al. Ein Ylidkomplex des Rutheniums mit drei-und viergliedrigen Metallocyclen / An Ylide Complex of Ruthenium with Three-and Four-Membered Metallocycles , 1980 .
[41] B. Longato,et al. Synthesis and molecular structure of cis-1-[(C6H5CH2)3PHC6H5)(CH2C6H5)2]-2-CH3-1,2-(σB10C2H10) , 1979 .
[42] F. R. Kreissl,et al. Übergangsmetallketen‐Verbindungen; VI1) Übergangsmetall‐substituierte Ketene von Molybdän und Wolfram ‐ Darstellung, Reaktivität und spektroskopische Untersuchung , 1979 .
[43] E. Muetterties,et al. Chemistry of zero- and low-valent metal phosphine and phosphite complexes. 4. The iron system , 1978 .
[44] P. Friedrich,et al. Übergangsmetall-Carbin-Komplexe, XXVII. Dicarbonyl(π-cyclopentadienyl)carbin-Komplexe des Wolframs , 1977 .
[45] H. Schmidbaur,et al. Funktionelle Trimethylphosphinderivate, VI1 Lithium-dimethylphosphinomethanid, (CH3)2PCH2Li, Tetraorganodiphosphinomethane, R2PCH2P(CH3)2 und Tris(dimethylphosphinomethyl)phosphin, P[CH2P(CH3)2]3 Functional Derivatives of Trimethylphosphine, VI1 / Lithium-dimethylphosphinomethanide, (CH3)2PCH2Li, Te , 1977 .
[46] H. H. Karsch,et al. Funktionelle Trimethylphosphinderivate, II. Ambivalentes Verhalten von Tetrakis(trimethylphosphin)eisen : Das Isomerengleichgewicht , 1977 .
[47] G. Huttner,et al. p‐Tolylketenyl als neuartiger dihapto‐3‐Elektronen‐Ligand , 1977 .
[48] P. Friedrich,et al. p‐Tolylketenyl as Novel dihapto 3‐Electron Ligand , 1977 .
[49] H. Schmidbaur,et al. The Dimethylphosphinomethanide Ion, (CH3)2PCH2⊖: A Novel Ligand for Transition Metals , 1975 .
[50] H. H. Karsch,et al. Das Dimethylphosphinomethanid-Ion, (CH3)2PCH2?, ein neuer Ligand fr bergangsmetalle , 1975 .
[51] E. Muetterties,et al. Phosphine chemistry of iron(0) and -(II) , 1975 .
[52] C. G. Kreiter,et al. Ungewöhnliche 13C‐Chemische Verschiebungen an Übergangsmetall‐Carben‐Komplexen , 1972 .
[53] C. G. Kreiter,et al. Unusual 13C Chemical Shifts of Transition Metal‐Carbene Complexes , 1972 .
[54] G. R. Norman,et al. The Preparation and Reactions of Diphenylphosphinous Chloride , 1955 .