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1.
A controlled substitution reaction of the chlorine atoms of 1,3,5-benzenetricarbonyl trichloride by the organoiron fragment (CpFe(CO)2S) has been achieved. The complexes CpFe(CO)2SCO-3,5-C6H3(COCl)2 (1), 1,3-[CpFe(CO)2SCO]2-5-C6H3COCl (2) and 1,3,5-[CpFe(CO)2SCO]3C6H3 (3) were prepared from the reaction of (μ-S x )[CpFe(CO)2]2 (x = 3, 4) with 1,3,5-C6H3(COCl)3 in a 1:1, 2:1, or 3:1 metal to ligand molar ratio. The reactions of (1) with amines, thiols, and carboxylic acids produce the trifunctional mono-iron complexes CpFe(CO)2SCO-3,5-C6H3(COY)2 [Y = NR2 (4), SR (5), OCOR (4)]. The X-ray structure determination of (1) is reported.  相似文献   

2.
The present study illustrates the stability of [CpFe(CO)2(NCS)] and [CpFe(CO)2(SCN)] linkage isomers by the use of MPW1PW91 quantum method in the gas and solution phases. Our results reveal that the [CpFe(CO)2(NCS)] isomer is more stable than the [CpFe(CO)2(SCN)] isomer. Based on the polarizable continuum model, the effect of the solvent polarity on the stability, structural parameters, frontier orbital energies, and vibrational modes of carbonyl ligands (νCO) of these linkage complexes is explored. The molecular orbital analysis suggests that the major contributions to HOMO and LUMO arise from the ambidentate ligand and Fe in two isomers, respectively. In addition, the bonding interaction between the CpFe(CO)2 fragment and the ambidentate ligand is studied by means of the energy decomposition analysis. The back-bonding effect in Fe–CO bonds is revealed in the calculation of the quadrupole polarization of the carbon atom by the QTAIM analysis. The character of Fe–N and Fe–S bonds in these complexes is analyzed by the natural bond orbital analysis.  相似文献   

3.
The reaction of Ru3(CO)12 with 2(diphenylphosphino)ethyl-triethoxysilane (DPTS) in hydrocarbons, leads to the functionalized Ru3(CO)12−n [Ph2P(CH2)2Si(OEt3)] n (n = 1,2) complexes. The complex with two phosphine substituents was chemically anchored on mesoporous silicas, SBA-15 and MCM-41, in order to obtain two hybrid materials characterized by a different localization of the metal centre on the surface of the porous supports. A detailed investigation of the cluster, before and after chemical anchoring on the mesoporous silicas, was pursued. Particular attention was also devoted to the study of the morphological, structural and textural properties of the metal-functionalised silicas (Ru/SBA-15 and Ru/MCM-41) by infrared spectroscopy (FT-IR), scanning electron microscopy, X-ray diffraction and N2 physisorption analysis.  相似文献   

4.
Using new atomic natural orbital basis sets constructed to treat correlation of all M-shell electrons for the first transition row, we have calculated the energies of the reaction M(CO) n M+nCO for M=Ni,Fe,Cr and n=4,5,6, respectively. Both coupled-cluster and multiconfigurational reference perturbation theory are used as correlation treatments, and although they give qualitatively similar results once basis set superposition error is accounted for, multireference perturbation theory gives binding energies that are larger than both coupled-cluster theory and experiment. The agreement between our best calculated results and experiment is excellent for Ni(CO)4 and Fe(CO)5, but very poor for Cr(CO)6. The experimental result for the latter is old and we suggest that revisiting this system experimentally would be valuable. AcknowledgementsThis work was supported by the National Science Foundation through grant no. CHE-9700627 and cooperative agreement no. DACI-9619020, and by a grant of computer time from the San Diego Supercomputer Center. The authors acknowledge helpful discussions with Björn Roos and Paul Bagus.Contribution to the Björn Roos Honorary Issue  相似文献   

5.
Reaction of [Ru6C(CO)16]2− with an excess of AgX (X = Cl, Br or I) affords heteronuclear clusters of formula [{Ru6C(CO)16Ag2X}2]2− in 80% yield, which for X = I and X = Br/Cl were crystallographically characterised. The formation of the cluster was followed in solution using electrospray ionisation mass spectrometry (ESI-MS), which revealed the presence of a wide range of clusters with the general formula [{Ru6C(CO)16} x Ag y X z ](2x−y+z)− where x = 1 or 2, y = 1, 2, 3 or 4 and z = 0, 1 or 2. The high yield of the product despite the evident complicated solution speciation is attributed to selective crystallisation of the observed compound driving the equilibrium toward this product.  相似文献   

6.
The photochemical CO-loss products of the diruthenium complexes [CpRu(CO) 2]2 (5; Cp = 5-C5H5), [Cp*Ru(CO)2]2 (5*; Cp* = 5-C5(CH3)5) and CpCp*[Ru(CO)2]2 (5) have been studied experimentally in low-temperature (96 K) matrices in 3-methylpentane by using IR spectroscopy. It is proposed that all three complexes undergo single-CO-loss chemistry but that the products have different structures. The single-CO-loss product from 5 is proposed to have one bridging and two terminal carbonyl ligands, whereas 5* and 5 generate triply bridged CO-loss products similar to that observed from [CpFe(CO)2]2 and [Cp*Fe(CO)2]2. Double-CO-loss from 5* and 5* 9 is also apparently observed. Relativistic DFT calculations have been carried out on various isomers of the starting materials and on potential CO-loss products from 5. The calculations suggest that the triply bridged product Cp2Ru2(-CO)3 (6) might have a singlet ground state in contrast to the corresponding diiron complex Cp2Fe2(-CO)3 (3), which has a triplet ground state.  相似文献   

7.
The new alkoxysilyl-functionalized alkynes [HC≡CCH2N(H)C(=O)N(H)(CH2)3Si(OEt)3] and [HC≡C(C6H4)–N(H)C(=O)N(H)(CH2)3Si(OEt)3] have been synthesized using literature methods. These have been reacted with Fe3(CO)12, Ru3(CO)12 and Co2(CO)8. With the iron carbonyl only decomposition was observed: with Ru3(CO)12 splitting of the alkynes into their parent components and formation of the complexes (μ-H)Ru3(CO)9[HC=N(CH2)3Si(OEt)3], (μ-H)Ru3(CO)9[C–C(C6H4)NH2] and (μ-H)2Ru3(CO)9[HC–CCH3] occurred. Finally, with Co2(CO)8 formation of complexes Co2(CO)6(HC2R) R=(C6H4)NH2, CH2NH(CO)NH(CH2)3Si(OEt)3, (C6H4)NH(CO)NH(CH2)3Si(OEt)3 containing the intact alkynes could be obtained.  相似文献   

8.
The novel complexes CpFe(CO)(COR)P(C6H5)2NR'R* with Cp = C5H5,C9H7 (indenyl); R = CH3, C2H5, CH(CH3)2, CH2C6H5;R` = H, CH3, C2H5, CH2C6H5 and R* = (S)-CH(CH3)(C6H5), have been synthesized by reaction of CpFe(CO)2R wiht P(C6H5)2NR`R* and characterized analytically as well as spectroscopically. The pairs of diastereoisomers RS/SS have been separated by preparative liquid chromatography and fractional crystallization, respectively. The optically pure complexes (+)436- und ()436-CpFe(CO)(COR)P(C6H5)2NR`R* are configurationally stable at room temperature. At higher temperatures they equilibrate with CpFe(CO)2R and epimerize with respect to the Fe configuration.  相似文献   

9.
[Cp((CO)2Fe(PPh2H)]PF6 reacts with NaBH4 to give the intermediates CpFe(CO)2H and PPh2H, which are then converted into Cp(CO)(H)Fe(PPh2H). [Cp(CO)2FeL]PF6 (L = P(OMe)3, P(OEt)3 and P(OiPr)3) reacts with NaBH4 to give the product Cp(CO)(H)FeL directly without Cp(CO)2FeH and L even being formed transiently. The proposed reaction mechanism is that H attacks th phosphorus atom to give a metallaphosphorane complex, followed by coupling between a Cp(CO)2Fe fragment and H on the hypervalent phosphorus.  相似文献   

10.
Four new triphenylgermylruthenium carbonyl compounds HRu(CO)4GePh3, 14; Ru(CO)4(GePh3)2, 15; Ru2(CO)8(GePh3)2, 16; and Ru3(CO)9(GePh3)3(μ-H)3, 17 were obtained from the reaction of Ru(CO)5 with Ph3GeH in hexane solvent at reflux, 68 °C. The major product 14 was formed by loss of CO from the Ru(CO)5 and an oxidative addition of the GeH bond of the Ph3GeH to the metal atom. This six coordinate complex contains one terminal hydrido ligand. Compound 15 is formed from 14 and contains two trans-positioned GePh3 ligands in the six coordinate complex. Compound 16 contains two Ru(CO)4(GePh3) fragments joined by an Ru–Ru single bond. Compound 17 contains a triangular cluster of three ruthenium atoms with three bridging hydrido ligands and one terminal GePh3 ligand on each metal atom. When heated to 125 °C, 14 was converted to the new triruthenium compound Ru3(CO)10(μ-GePh2)2, 18. Compound 18 consists of a triangular tri-ruthenium cluster with two GePh2 ligands bridging two different edges of the cluster and one bridging CO ligand. Ru3(CO)12 was found to react with Ph3GeH at 97 °C to yield three products: 15, and two new compounds Ru3(CO)9(μ-GePh2)3, 19 and Ru2(CO)6(μ-GePh2)2(GePh3)2, 20 were obtained. Compound 19 is similar to 18 having a triangular tri-ruthenium cluster but has three bridging GePh2 ligands, one on each Ru–Ru bond. Compound 20 contains only two ruthenium atoms joined by a single Ru–Ru bond that has two bridging GePh2 ligands and a terminal GePh3 ligand on each metal atom. All compounds were characterized by a combination of IR, 1H NMR, single-crystal X-ray diffraction analyses. This report is dedicated to Professor Dieter Fenske on the occasion of his 65th birthday for his many pioneering contributions to the chemistry of metal chalcogenide cluster complexes.  相似文献   

11.
The reaction of CpFe(CO)2X (X = Cl, Br, I) with SbY5 (Y = F, Cl) in toluene leads to the cationic, halogen‐bridged compounds [{Cp(CO)2Fe}2X]SbY6 ( 1 – 6 ). The halide of CpFe(CO)2X is eliminated by the Lewis acid SbY5, and the fragment “CpFe(CO)2+” reacts with further CpFe(CO)2X to form the halogen bridge between both the organometallic substituents. The exclusive formation of the counter anion SbY6 is caused by the oxidizing action of the antimony pentahalides, by which SbY3 and the interhalogens XY are always obtained. The compounds have been characterized by their NMR‐, IR‐ and Mass spectra, the compounds 1 – 3 and 6 additionally by single crystal structure analyses. They show decreasing bond angles Fe–X–Fe following the range Cl → Br → I and the VSEPR concept; the two CpFe(CO)2 groups are staggered with the dihedral angle Cp(centre)–Fe–Fe–Cp(centre) of about 160°.  相似文献   

12.
The clusters Fe2(CO)6(μ-XCH2CH=CH2)(μ3-X)Fe(CO)2Cp (X = S, Se) were prepared by the successive treatment of the bi- and trimetallic complexes Fe2(CO)6(μ-Se2) and Fe3(CO)93-X) with allylmagnesium chloride and CpFe(CO)2I. The clusters obtained contain a noncoordinated C=C bond. The structure of the Se-containing cluster was suggested on the basis of comparison of its spectral data (IR,1H NMR, and Mössbauer spectra) with the spectra of the analogous S-containing complex, which was previously characterized by X-ray diffraction analysis.  相似文献   

13.
Organoiron thio- and seleno-terephthaloyl chloride complexes CpFe(CO)2ECO(C6H4)COCl (E = S and Se) react with NaOH and NaNH2 to give quantitative yields of the acid Cp(CO)2ECO(C6H4)CO2H and the amide CpFe(CO)2ECO(C6H4)CONH2 respectively. These amide and acid derivatives react with the terephthaloyl chloride complexes to give a new series of imide-bridged [CpFe(CO)2ECO(C6H4)CO]2NH and anhydride-bridged [CpFe(CO)2ECO(C6H4)CO]2O organoiron dinuclear homo and hetero dichalcogeno terephthalate complexes. The complexes were characterized by elemental analysis, i.r. and 1H-n.m.r. spectra. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

14.
The structures of palladium carbonylcarboxylate clusters [Pd2(CO)2(RCOO)2] n (n = 2, R = CH3, CH2Cl, CF3, n = 3, R = CMe3, CHMe2, n-C5H11) are studied in benzene and tetrahydrofuran solutions by IR and 1H and 13C NMR spectroscopy. The clusters in the solid state have a planar cyclic metal framework with pairs of the carbonyl and carboxylate ligands alternately coordinated on its sides. In solutions, compounds under consideration contain one-type carbonyl ligands and one-type carboxylate ligands; their structures are similar to thaso in the solid state.  相似文献   

15.
It was found that the recrystallization of the adduct Mn[(OOCC5H4)Mn(CO)3]2[O(H)Me]4 from hot acetonitrile in the presence of benzene produces polymer [μ-(OOCC5H4)Mn(CO)3]4[μ-η2-(OOCC5H4)Mn(CO)3]2(NCMe)2(OH2)2([μ-η2-(OOCC5H4)Mn(CO)3]2)[μ-(OOCC5H4)Mn(CO)3]4[μ-η2-(OOCC5H4)Mn(CO)3]2(OH2)2n. The obtained polymer was characterized by X-ray diffraction analysis.  相似文献   

16.
The vibrational spectra of a series of HF solutions in acetone (1:20–8.9:1) are analyzed with the help of special techniques. It is shown that three types of strong heteroassociates (HAs) with 1:1, 4:1, and ≥10:1 stoichiometric ratios of the molecules are formed in the HF-(CH3)2CO binary liquid system. The concentration ranges of the existence of HAs in the solution and the stretching vibrational frequency of their constituent HF molecules are estimated. The density functional method (B3LYP/6-31++G(d,p)) is used to calculate the optimal configurations and IR spectra of the (HF) m ·((CH3)2CO) n molecular complexes (m = 1, 2, 4, 8, n = 1, 2) of different structure. The relative stability of the latter is studied. By comparing the calculated and experimental data, the composition (2:2 and 4:1) and structure of two types of HAs are determined.  相似文献   

17.
The purpose of this work was to indirect label IgG with fac-[188Re(CO)3(H2O)3]+ and to check the radiochemical behavior of the labeled product. The compound of (bis(2-pyridylmethyl)-amino)-acetic acid (L2H) was synthesized and labeled with fac-[188Re(CO)3(H2O)3]+. The labeling yield of 188Re(CO)3–L2H was more than 90%. The effects of protein concentration, reaction time, pH and reaction temperature of labeling of IgG with 188Re(CO)3–L2H were investigated. The conjugation conditions were optimized. The labeled product was analyzed by size exclusion HPLC and TLC. The stability of 188Re(CO)3–L2H–IgG in vitro was high. The results of this study may be useful for [188Re(CO)3(H2O)3]+ labeling of protein for radioimmunotherapy.  相似文献   

18.
The crystallization polytherm of the ternary CO(NH2)2–KNO3–H2O system is plotted for the first time via visual polythermal analysis and calculating ternary eutonics characteristics from data on the boundary elements of two-component systems. The ternary eutonics modeling error does not exceed 3.5%. In addition to the crystallization fields of individual components, the field of the redox reaction that occurs in the system between potassium nitrate and carbamide is shown in the CO(NH2)2–KNO3–H2O diagram by a dashed outline.  相似文献   

19.
The thiocarbonyl-bridged complex Cp2Fe2(CO)3CS is obtained by the reaction of CpFe(CO)2? and (PhO)2CS in THF. Infrared and NMR spectra show that the compound exists in solution in interconverting cis and trans forms, but that the isomerization occurs more slowly than for the carbonyl analog [CpFe(CO)2]2. Most reagents which cleave [CpFe(CO)2]2, such as Br2, HgCl2, and O2/HBF4, do not give simple cleavage reactions with Cp2Fe2(CO)3CS. Reductive cleavage of Cp2Fe2(CO)3CS with Na(Hg) gives the thiocarbonyl anion CpFe(CO)(CS)?, which reacts with Ph3SnCl to form CpFe(CO)(CS)SnPh3. Methylamine reacts with CpFe(CO)(CS)SnPh3 to give CpFe(CO)(CNMe)SnPh3, while ethylenediamine gives the carbene complexes CpFe(CO)C(N2C2H6)SnPh3. The preparation of another new carbene complex, [CpFe(CO)2C(OMe)2]PF6, is also described.  相似文献   

20.
Mer-[Mo(CO)3(p-C5H4N-CN)3] was prepared by UV-irradiation of a THF solution of Mo(CO)6 and para-cyanopyridine under heating. The complex was characterized by FT-IR, MS, 1H and 13C NMR and showed catalytic activity for olefin hydroformylation (1-hexene, cyclohexene and 2,3-dimethyl-2-butene as model olefins; 600 psi synthesis gas (pCO/pH2 = 1); 100 °C; 24 h; toluene). An examination of the complex catalyzed hydroformylation of a real naphtha cut (El Palito refinery, Venezuela), under the same conditions, also showed activity in the conversion to oxygenated products.  相似文献   

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