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  • Rhenium complexes  (6)
  • Iridium complexes  (5)
  • Gold  (4)
  • α-Amino acids  (4)
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  • 1
    ISSN: 0009-2940
    Keywords: Tungsten complexes ; Rhenium complexes ; Iron complexes ; Ruthenium complexes ; Osmium complexes ; Cobalt complexes ; Vinyl ; Cyclohexadienyl ; Cycloheptadienyl ; Cyclooctatrienyl ; Hydrocarbon-bridged complexes ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Hydrocarbon-Bridged Complexes, XXX.  -  Nucleophilic Addition of Carbonylmetallates to Cationic Vinyl, Diene, Dienyl and Triene Complexes of Iron, Ruthenium and Cobalt: Di-, Tri-, Tetra- and Pentametallic Complexes with σ,σ- and σ,π-Hydrocarbon BridgesHerrn Professor Ekkehard Lindner zum 60. Geburtstag gewidmet.The reactions of [Re(CO)5]-, [Ru(CO)2Cp]-, and [Os(CO)4]2- with [Cp2(OC)2Fe2(μ-CO)(μ-η1:η2-CH=CH2)]+, [Cp*Ru(η2:η4-1,3,7-octatriene)]+, [(OC)Fe(η4-diene)(η5-cycloheptadienyl)]+, and [CpCo(η5-cyclodienyl)]+ give the nucleophilic adducts whereas with [Mn(CO)5]-, [W(CO)3Cp]-, and [Fe(CO)2Cp]- formation of the corresponding C-C coupling products and of the metal-metal-bonded dimers is observed. The structures of Cp*Ru(μ-η1:η2:η3-1,5-octadienyl)Re(CO)5 (4), [Cp* Ru(μ-η1:η2:η3-1,5-octadienyl)]2Os(CO)4 (6), and of (OC)-Fe(η4-1,3-cyclohexadiene) (μ-η1:η4-1,3-cycloheptadiene)Re(CO)5 (9) have been determined by X-ray diffraction.
    Additional Material: 3 Ill.
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  • 2
    ISSN: 0009-2940
    Keywords: Gold complexes ; Palladium complexes ; Platinum complexes ; Rhodium complexes ; Iridium complexes ; 3′-Azido-3′-deoxythymidine ; 3′-Isocyano-3′-deoxythymidine ; Anti-HIV ; Antiinflammatory activity ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Metal Complexes of Biologically Important Ligands, LX.  -  Metal Complexes of 3′-Azido-3′-deoxythymidine (AZT) and 3′-Isocyano-3′-deoxythymidineMetal complexes of N-3-deprotonated 3′-azido-3′-deoxythymidine (AZT  -  H+), (AZT  -  H+)AuPR3 (R = Me, Et, Ph) (2, 3, 4), trans-(AZT  -  H+)2Pd(NH3)2 (5), [(n-Bu3P)(AZT  -  H+) M(μ-Cl)2M(AZT  -  H+)(n-Bu3P)] (M = Pd, Pt) (6, 7), trans-(Ph3P)2Pd(AZT  -  H+)2 (8), cis-(Ph3P)2Pt(AZT -  H+)(Cl) (9), and complexes of 3′-isocyano-3′-deoxythymidine (L), (Et3P)(L)- PdCl, (11), (12), (n-Bu3P)(L)PtCl2 (13), [(Ph3P)2(L)PtCl](BF4) (14), (η5-C5Me5)(L)RhCl2 (15), and (η5-C5Me5)(L)IrCl2 (16) have been prepared and characterized by IR and NMR spectra, 2 by X-ray crystallography. 2, 4, and 9 show an anti-HIV activity very similar to AZT; 2 exhibits antiinflammatory activity.
    Additional Material: 1 Ill.
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  • 3
    ISSN: 0009-2940
    Keywords: Heterobimetallic complexes ; Tungsten complexes ; Iron complexes ; Ruthenium complexes ; Manganese complexes ; Rhenium complexes ; Diene bridges, σ,π-C6, -C7, and -C8 ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Hydrocarbon-Bridged Metal Complexes, XX. - Nucleophilic Addition of Carbonyl Metallates to Cationic Hexadienyl, Cyclohexadienyl, Cycloheptadienyl, and Cyclooctadienyl Complexes of Iron and Ruthium: Heterobimetallic Complexes with η1:η4, -C6, -C7, and -C8 Hydrocarbon BridgesThe addition of Re(CO)-5, Mn(CO)-5, and [(η5-C5H5)W(CO)3]- to the cationic dienyl complexes [(η5-dienyl)M(CO)3]+ (M = Fe, Ru; dienyl = hexadienyl, cyclohexadienyl, cycloheptadienyl, cyclooctadienyl, bicyclo[5.1.0]octadienyl) gives the heterobimetallic η1:η4-hydrocarbon-bridged complexes 1 - 4, 6, 7. In solution the initial nucleophilic adduct 2e of [(η5-cyclo-hexadienyl)Ru(CO)3]+ and [Re(CO)5]- rearranges to the complex 3, in which the Re(CO)5 group is bound to a sp2 carbon atom. By using Mn(CO)-5 also the products of electron transfer between cation and anion have been observed. The crystal structures of (OC)3Fe(μ-η4:η1-hexadiene)Re(CO)5 (1), (OC)3Ru(μ-η4:η1-cyclohexadiene)Re(CO)5(3), (OC)3Fe(η4:η4-C7H9 - C7H9)Fe(CO)3 (5), (OC)3Ru(μ-η4:η1-cyclooctadiene)Re-(CO)5 (6b), and of (OC)3Fe(η4:η1-bicyclo[5.1.0]octadiene)-Re(CO)5 (7) have been determined by X-ray diffraction.
    Additional Material: 5 Ill.
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  • 4
    ISSN: 0009-2940
    Keywords: Fischer carbene complexes, anionic ; Carbene, methoxy(pentacarbonylrheniopropyl) ; Chromium complexes ; Molybdenum complexes ; Tungsten complexes ; Rhenium complexes ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Hydrocarbon-Bridged Metal Complexes, XXII1). - Addition of Anionic Fischer Carbene Complexes to Coordinated Unsaturated Hydrocarbons with C - C CouplingThe addition of [(OC)5MC(OMe)CH2]- (M = Cr,W) to the cationic complexes [(OC)5Re(C2H4)]+ and [(OC)3M' (λ7-C7H7)]+ (M' = Cr, Mo) affords the bimetallic hydrocarbon-bridged complexes (OC)5M = C(OMe)CH2CH2CH2Re(CO)5 (1) and (OC)5M = C(OMe)CH2C7H7 - λ6 - M'(CO)3 (2), respectively. The structures of 1a and 2d have been determined by X-ray diffraction.
    Additional Material: 2 Ill.
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  • 5
    ISSN: 0009-2940
    Keywords: Hexadeamino-hexaisocyano-neomycin B ; Organometallic complexes ; Gold ; Chromium ; Rhodium ; Iridium ; Ruthenium ; Palladium ; Platinum ; Hexanuclear carbene gold(I) complexes ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: From the amino glycoside neomycin B, the acetate-protected hexaisocyanide 4 has been prepared. 4 forms the hexanuclear complexes [(4)(AuCl)6] (5), {(4)[Cr(CO)5]6}, {(4)[MCl2(η5-C5Me5)]6} (M = Rh, Ir), {(4)[RuCl2(p-cymene)]6}, {(4)-[MCl2(PR3)]6} (M=Pd, Pt), and 4{(4)[PdCl(C6H4CH2NMe2)]6). The hexaisocyanohexagold(I) complex 5 reacts with H2NtBu and PhNH2 to give the corresponding carbene complexes. The compounds have been characterized by IR, 13C- and 31P-NMR spectroscopy, and (partially) by FAB-MS data.
    Additional Material: 4 Tab.
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  • 6
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 122 (1989), S. 1031-1034 
    ISSN: 0009-2940
    Keywords: Hexachloropalladate(IV) ; α-Amino acids ; 1-Pyrroline and 1-pyrroline-2-carboxylate as ligands ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Metal Complexes of Biologically Important Ligands, LI. - Reactions of α-Amino Acids with Hexachlorpalladate(IV). Stabilization of 1-Pyrroline at Palladium(II)Hexachloropalladate(IV) reacts with an excess of α-amino acids under reduction of the metal to give palladium(II) chelate complexes PdL2 (1) (L = anion of L-Val, L-Leu, L-Phe, L-Glu, L-Gln, DL-indoline-2-carboxylic acid). Chloro-bridged complexes LPd(μ-Cl)2PdL (2) are obtained from [PdCl6]2- and L-Asp, L-Asn, and L-thioproline, respectively. With L-Met, L-Cys, L-LeuOMe, and L-PheOMe Pd(II) complexes 3-5 are also isolated. L-Pro is dehydrogenated and decarboxylated by [PdCl6]2- to yield the Pd(II) complex 6 with 1-pyrroline-2-carboxylate and 1-pyrroline as ligands. L-Cys-Cys and L-Ala yield Pd(IV) complexes 8, 9.
    Notes: Hexachloropalladat(IV) setzt sich mit α-Aminosäuren im Überschuß unter Reduktion des Metalls zu Palladium(II)-Chelatkomplexen PdL2 (1) um (L = Anion von L-Val, L-Leu, L-Phe, L-Glu, L-Gln, DL-Indolin-2-carbonsäure). Chloro-verbrückte Palladium(II)-Komplexe LPd(μ-Cl)2PdL (2) bilden sich bei der Umsetzung von [PdCl6]2- mit L-Asp, L-Asn, und L-Thioprolin. Auch mit L-Met, L-Cys, L-LeuOMe und L-PheOMe werden Palladium(II)-Komplexe (3-5) isoliert. L-Pro wird durch [PdCl6]2- dehydriert bzw. decarboxyliert, wobei der Palladium(II)-Komplex 6 mit 1-Pyrrolin-2-carboxylat und dem in freiem Zustand instabilen 1-Pyrrolin als Liganden erhalten wird. L-Cys-Cys und L-Ala bilden Palladium(IV)-Komplexe (8, 9).
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  • 7
    ISSN: 0009-2940
    Keywords: Palladium complexes ; Rhodium complexes ; α-Amino acids ; 2-Iminocarboxylate as ligand ; Chiral glycine ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Metal Complexes of Biologically Important Ligands, LXVII[1]. - Synthesis of α-Amino Acids from Palladium(II)- and Rhodium(III)-Coordinated Imines and Oximes of α-OxocarboxylatesThe bis-chelate complexes Pd[O2CC(R1)=NOR2]2 (1) and Pd[O2CC(R1)=NR2]2 (2, R2 optically active substituent) are synthesized by template condensation of an α-oxocarboxylic acid with a hydroxylamine or amine component, respectively. Similarly, the Rh(III) complexes Cp*Rh(Cl)[O2CC(R)=N(CHMePh)] (3a: R = H, 3b: R = Me) were obtained from α-oxocarboxylic acids and optically active 1-phenylethylamine. Catalytic hydrogenation of 1 and 2 gives directly the free α-amino acids with, in case of 2, ee's between 0 and 36%. Nucleophilic attack by the carbanions of RC(O)CH2CO2Et and H2NCH(CO2Et)2 at the imino carbon atom of 3a leads to the α-amino carboxylato complexes 4 and 5. - Compounds 4a and 5 have been characterized by X-ray diffraction. Reaction of 3a with NaBH4 or NaBD4 followed by decomposition of the complex with HCl yields N-substituted glycine and N-substituted α-deuterio-glycine, respectively. The diastereoselectivity (70:30) of the α-deuteration could be determined by NMR spectroscopy.
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  • 8
    ISSN: 0009-2940
    Keywords: Bis(acyl)1-bridged bimetallic complexes ; Rhenium complexes ; Molybdenum complex ; Ruthenium complex ; Copper complex ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Organometallic Lewis Acids, IL[1]. - Bis(acyl)1-Bridged Heterometallic Complexes of Rhenium, Molybdenum, Ruthenium, and CopperThe reaction of the metalla-β1-diketonate complex [(OC)41-Re[-C(Me)O]2][NMe4] with various organometallic Lewis acids yields the bis(acyl)1-bridged bimetallic complexes (OC)4 -Re[-C(Me)O-]2Re(CO)4 (1), (OC)4Re[-C(Me)O-]2MoCp(CO)2 (2), (OC)4Re[-C(Me)O-]2Ru(η31-C3 H5)(nbd) (nbd=norbor-nadiene) (3), [(OC)4 Re[-C(Me)O-]2Ru(PPh3)2 (CO)2][BF4] (4), and (OC)4 Re[-C(Me)O-]2Cu[-O(Me)C-]2Re(CO)4 (5), respectively. The structures of the compounds 1-5 have been determined by X-ray diffraction. They show different conformations of the six-membered ring Re[-C(Me)O-]2[M]. The molecular structure of complex 1 proves a “flipping” of the acyl ligands.
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  • 9
    ISSN: 0009-2940
    Keywords: Cobalt complexes ; Rhodium complexes ; Iridium complexes ; Ruthenium complexes ; Pentamethylcyclopentadienyl ; α-Aminoamide ligands ; Glycinenitrile ligand ; Peptide ester ligands ; Aspartame ; Asparagine ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Metal Complexes with Biologically Important Ligands, LXV[1].  -  Chiral Half-Sandwich Complexes of Cobalt(III), Rhodium(III), Iridium(III), and Ruthenium(II) with α-Amino Amide, Glycinenitrile, and Peptide Ester LigandsCp*Co(CO)I2 (Cp* = η5-C5Me5), [(η6-arene)RuCl2]2 (arene = p-cymene, hexamethylbenzene), and [Cp*MCl2]2 (M = Rh, Ir) react with α-amino amides and various peptide esters to give the N,O-chelate complexes [Cp*(I)Co  -  NH2C(H)(R1)C(NHR2)-O]+ (1), [(η6-arene)(Cl)Ru  -  NH2C(H)(R1)C(NHR2)O]+ (2), and [CP*(Cl)M - NH2CH2C(NHR)O]+ (M = Rh, Ir) (5, in solution), respectively. In the solid state the ligands are η1N-bonded in 5. By deprotonation of the peptide bond in 2 and 5 the neutral N, N-chelate complexes (η6-arene)(Cl)Ru  -  NH2C(H)(R1)C(O)-N̊2 (6) and Cp*(Cl)M  -  NH2C(H)(R1)C(O)NR2 (M = Rh, Ir) (7) have been obtained. Glycinenitrile is η1-bonded in (η6-p-cymene)(Cl)2Ru(NH2CH2CN) (3) and Cp*(Cl)2Rh(NH2CH2CN) (4). Double deprotonated triglycine methyl ester is a N,N,N-tridentate ligand in (η6-C6Me6)Ru(NH2CH2C(O)NCH2C(O)-NCH2CO2Me) (8). The anions of L-asparagine and of aspartame (L-aspartyl-L-phenylalanine methyl ester) give the complexes 9-12 with tridentate O,N,O- or O,N,N-chelate ligands. The crystal structures of 1d (L = glyglyOEt), 5a (L = glycinamide), 6e (L = glyglyOEt), and 7k (L = glyglyglyOEt) have been determined by X-ray structural analysis.
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  • 10
    ISSN: 0009-2940
    Keywords: Ruthenium complexes ; Osmium complex ; Hydrido complexes ; α-Amino acids ; Oxidative Addition ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Metal Complexes of Biologically Important Ligands, LXX[1].- Synthesis, Stereochemistry and Reactions of Ruthenium(II) and Osmium(II) Complexes with α-Amino CarboxylatesHerrn Professor Helmut Werner zum 60. Geburtstag gewidmet.The reactions of MHCl(CO)(PPh3)3 with salts of α-amino acids give the hydrido-N,O-chelate complexes MH(CO)(NH2CHR-COO)(PPh3)2 (1a-g;) M = Ru, Os). Complexes 1a-c can alternatively be prepared by oxidative addition of the appropriate α-amino acid to Ru(CO)3(PPh3)2. The crystal structure of 1b has been determined by an X-ray structural analysis. The leucinato compound 1c is an effective catalyst for the decomposition of formic acid. In contrast, reactions of RuHCl-(CO)(PPh3)3 with α-amino acids afford the chloro-N,O-che-late complexes RuCl(CO)(NH2CHRCOO)(PPh3)2 2a-h. The decomposition reactions of 2c, 2g and2h have been investigated.
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