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Summary Tetraazaadamantane (taad) reacts with group VI metal hexacarbonyls to give mononuclear (taad)M(CO)5 (M=Cr, Mo and W) derivatives. Mixed ligand metal tricarbonyls,cis- (L-L)(taad)M(CO)3 (L-L=o-phenanthroline or 2,2-bipyridine; M=Cr and Mo) have also been synthesised. Bromine or iodine reacts with (taad)M(CO)5 (M=Cr and Mo) to give [(taad)M(CO)5X]+X (X=Br or I). Nitrosyl chloride reacts with (taad)M(CO)5 at room temperature to yieldmer- (taad)M(CO)3NOCl while with the mixed (L-L)(taad)-Mo(CO)3 complex, a mixture of (L-L)Mo(NO)2Cl2 and (L-L)Mo(CO)2NOCl was obtained. An analogous reaction with (L-L)(taad)Cr(CO)3, gave only (L-L)Cr(NO)2Cl2 derivatives. The products have been characterised by elemental analysis, i.r. spectra, conductivity data and magnetic measurements.  相似文献   

3.
Sunlight irradiation of the reactions of [M(CO)6], M?=?Cr, Mo and W with salicylaldehyde isonicotinic acid hydrazone (H2salnah) in THF were investigated. Interaction of [Cr(CO)6] with H2salnah resulted in formation [Cr2O2(H2salnah)2]. The corresponding reactions of molybdenum and tungsten carbonyls yielded dinuclear oxo complexes [M2O6(H2salnah)]. All complexes were characterized by elemental analysis, IR, mass spectrometry and 1H NMR spectroscopy. The IR spectra of complexes exhibited bands due to either terminal or bridged metal oxygen bonds. Magnetic measurement of [Cr2O2(H2salnah)2] showed it has paramagnetic characteristics with high spin d4 configuration and μeff of 1.27?BM. Electronic spectra of the complexes in DMF displayed visible bands due to ligand-to-metal charge transfer. Thermal properties of the complexes were investigated by thermogravimetry technique.  相似文献   

4.
The positive-ion mass spectra of the following organonitrogen derivatives of metal carbonyls are discussed: (i) The compounds NC5H4CH2Fe(CO)2C5H5, NC5H4CH2COMo(CO)2C5H5, NC5H4CH2W(CO)3C5H5, NC5H4CH2COMn(CO)4, C5H10NCH2CH2Fe(CO)2C5H5, (CH3)2NCH2CH2COFeCOC5H5 and (CH3)2NCH2CH2COMn(CO)4 obtained from metal carbonyl anions and haloalkylamines, (ii) The isocyanate derivative C5H5Mo(CO)3CH2NCO; (iii) The arylazomolybdenum derivatives RN2Mo(CO)2C5H5 (R ? phenyl, p-tolyl, or p-anisyl); (iv) The compound (C6H5N)2COFe2(CO)6 obtained from Fe3(CO)12 and phenyl isocyanate; (v) The N,N,N′,N′-tetramethylethylenediamine complex (CH3)2NCH2CH2N(CH3)2W(CO)4. Further examples of eliminations of hydrogen, CO, and C2H2 fragments were noted. In addition evidence for the following more unusual processes was obtained: (i) Elimination of HCN fragments from the ions [NC5H4CH2MC5H5]+ to give the ions [(C5H5)2M]+ (M ? Fe, Mo and W); (ii) Conversion of C5H5Mo(CO)3CH2NCO to C5H5Mo(CO)2CH2NCO within the mass spectrometer; (iii) Elimination of N2 from [RN2MoC5H5]+ to give [RMoC5H5]+; (iv) Novel eliminations of HNCO, FeNCO, and C6H5NC fragments in the mass spectrum of (C6H5N)2COFe2(CO)6; (v) Facile dehydrogenation of the N,N,N′,-N′-tetramethylethylenediamine ligand in the complex (CH3)2NCH2CH2N(CH3)2W(CO)4.  相似文献   

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The mass spectra of a number of cis-disubstituted derivatives of the Group VI-B metal carbonyls (M = Cr, Mo, W), in which the substituents are bidentate ligands bonding to the metal through As, S or N donor atoms, have been obtained. The spectra for derivatives of o-phenylenebis-(dimethylarsine) (diars) have been examined in greatest detail. For these latter complexes, competitive loss of carbonyls and diars methyl groups was observed. The proposed use of such competition in the evaluation of metal-carbonyl bond strengths is examined. For complexes containing ethylene-bridged bidentate ligands, ions indicative of the loss of five fragments of 28 mass units from the parent ion, corresponding to loss of four carbonyls and the ethylene bridge, are observed. The question of whether ethylene loss occurs prior to, competitively with or after carbonyl loss is considered.  相似文献   

7.
Modes of formation, structural features, reactivities, and stereochemical nonrigidity of cluster carbonyl complexes with acetylide ligands are considered. Published inIzvestiya Akademii Nauk, Seriya Khimicheskaya, No. 7, pp. 1141–1167, July, 2000.  相似文献   

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The hexacarbonyl compounds of Cr, Mo, and W have been used as precursors in plasma-enhanced chemical vapor depositions (PECVD). They form films of good adherence on glass, ceramics, and a variety of polymers. The nature of the deposits depends very much on the composition of the gas, which forms the plasma. When pure argon is used, the resulting films contain considerable amounts of oxygen and carbon. Films deposited in hydrogen/argon mixtures consist of the metal and/or the carbide. With Ar/O2 mixtures, Mo(CO)6 and W(CO)6 are converted into films of MoO3 and WO3, respectively. When H2S/H2 mixtures are used as plasma gas, Mo(CO)6 yields films consisting of MoSx.  相似文献   

10.
《Journal of Coordination Chemistry》2012,65(16-18):2965-2977
Abstract

Thermal treatment of pyridine-2-ethyl cyclopentadiene (1) with Fe(CO)5 and Ru3(CO)12 gave novel intramolecular C–H activated dinuclear products (3 and 5). In the case of Fe(CO)5, the reaction also afforded the normal bis(cyclopentadienyl) diiron complex (4). However, similar reaction of pyridine-2-methyl cyclopentadiene (2) with Fe(CO)5 and Ru3(CO)12 only afforded the normal bis(cyclopentadienyl) dinuclear metal complexes (7 and 8). For Ru3(CO)12, the reaction also yielded a pendant η1-pyridyl-coordinated product (9). In addition, the reactions of 1 and 2 with Re2(CO)10 formed the corresponding pyridylethyl/pyridylmethyl cyclopentadienyl rhenium tricarbonyl complexes 10 and 11, which further underwent pyridine to rhenium cyclization via photoirradiation to provide the rhenium dicarbonyl complexes 12 and 13. The molecular structures of 3, 5, 6, 7, 8, 9, and 12 were determined by X-ray diffraction.  相似文献   

11.
The substitution of Group VI metal carbonyls by tertiary phosphines, triphenylarsine or dipyridyl is greatly accelerated by a two-phase system, benzene/ 50% aqueous sodium hydroxide, in the presence of tetra-n-butylammonium iodide as phase-transfer catalyst.  相似文献   

12.
Syntheses of twelve M(CO)5L complexes (M  Cr, Mo, W; L  CNSiR2R′, CNGeR2R′ for R,R′  Me,Ph) were accomplished by carbonyl displacement from M(CO)6 by L. Several cis-Mo(CO)4L2 complexes and one fac complex, Mo(CO)3(CNGeMe3)3, are also reported, prepared by displacement of bicycloheptadiene or cycloheptatriene from Mo(CO)4(bicycloheptadiene) and Mo(CO)3(cycloheptatriene). Infrared and 13C NMR spectra confirm that the ligands are isocyanides rather than cyanides although the latter is the stable and predominate form of the pure ligands. The mono-substituted compounds are only moderately stable when sealed in vacuo; otherwise stored they decompose rapidly probably by virtue of reaction with oxygen. The phenylsilyl and phenylgermyl isocyanide complexes are harder to store than the methyl analogues. The bis and tris complexes were very difficult to study, being thermally very unstable as well as reactive toward oxygen so that characterization of these species was only marginally successful.  相似文献   

13.
Substitution reactions of phosphine ligands, triphenylphosphine (PPh3), tri(m-chlorophenyl)phosphine (m-ClPPh3), tri(p-methoxyphenyl)phosphine (p-MeOPPh3) and tri(benzyl)phosphine (PBz3) with [M(CO)4(PCA)] (M?=?Cr, Mo and W, PCA?=?pyrazinecarboxamide) were found to be dependent on the type of metal and phosphine ligand. The complexes were characterized by elemental analysis, mass spectrometry, and IR and 1H NMR spectroscopy. UV–vis spectra of the complexes in different solvents showed bands due to metal-to-ligand charge transfer.  相似文献   

14.
Alkyl aluminum-, gallium-, and indium oxamidates Me4Al2(dpoa) (1), Me4Al2(dboa) (2), Me4Ga2(dpoa) (3), Me4Ga2(dboa) (4), tBu4Ga2(dpoa) (5) and Me4In2(dboa) (6) (dpoa-H2 = N,N′-diphenyloxamide, dboa-H2 = N,N′-di-tert-butyloxamide) have been prepared and characterized. Compounds 1-3, 5 and 6 exist in the form of isomers a only, with a skeleton framework of the molecules consisting of two almost flat, coplanar and fused MNOC2 (M = Al, Ga, In) heterocyclic rings. Depending on the reaction conditions, the compound 4 was obtained as the isomer 4a or as the mixture of two isomers 4a and 4b. Molecular structures of the compounds 1a-6a have been determined by X-ray crystallography. A structure of the isomer 4b was proposed on the basis of NMR spectroscopy. A skeleton framework of the 4b molecule consists of two fused different cycles, GaO2C2 and GaN2C2.  相似文献   

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16.
The compounds of two types were isolated in the reactions of dimanganese decacarbonyl with diazoles. The compounds with an unaltered oxidation state of the metal were formed as a result of nucleophilic substitution of a carbonyl ligand of Mn2(CO)10. The compounds with an altered oxidation state of the central atom were produced in redox-transformations of Mn2(CO)10. The substances were characterized by the data of mass-, IR-, 1H-NMR-spectra. The EPR-data were obtained for paramagnetic Mn2+ salts. The reactions of Mn2(CO)10 with diazoles are compared with those of iron carbonyls.  相似文献   

17.
The reactions of a wide range of transition-metal carbonyls with anhydrous HF are described. In particular, Ru3(CO)12, Os3(CO)12 and Ir4(CO)12 give the solution stable [Ru3(CO)12H]+, [Ru(CO)5H]+, [Os3(CO)12H]+, [Os(CO)5H]+ and [Ir4(CO)12H2]2+ respectively, which have been characterised by a combination of 1H and 13C NMR spectroscopy.  相似文献   

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The paramagnetic adducts formed when photochemically generated Mn(CO)5 or Re(CO)5 radicals are trapped by N,Nt?-di-t-butyl-1,4-diaza-1,3-butadiene (t-Bu-DAB) have been characterized by ESR spectroscopy. Adducts containing phosphorus have also been observed but attempts to produce adducts containing As, Sb or Bi have been unsuccessful. In a number of systems an identical ESR spectrum was observed. This has been shown to arise from the N,N′-di-t-butylpyrazinium cation.  相似文献   

20.
The different courses of the interactions of cyclopentadienyl and arene derivatives of Group VI and VII transition metal carbonyl and transition complexes with Lewis acids, in solutions, have been studied by IR spectroscopy.The information of adducts involving the metal atom was observed for CpRe(CO)2L (L = CO, PR3) with SnCl4, SnBr4, TiCl4; AreneM(CO)3 (M = Cr, Mo, W) with SnCl4, TiCl4; and Ph3PC5H4M(CO)3 (M = Cr, Mo, W) with TiCl4 and AlCl3. Complexes CpM(CO)2NO and CpM(CO(NO)PPh3, depending on thier donor and acceptor nature, form adducts involving the oxygen atoms of CO or NO groups or the metal atom. CpCr(NO)2Cl reacts with Lewis acids via the chlorine atom. The relative basicity of the different sites in the complexes investigated is discussed.  相似文献   

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