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1.
Antimony is reduced when [SbPh2BrO]2 is treated with Na[Mo(CO)3(η5-C5H5)] to produce [μ-SbPh2]2[Mo(CO)2(η5-C5H5)]2. A structure determination shows diphenylstibido groups bridging between two Mo(CO)2(η5-C5H5) moieties giving a central ‘butterfly’ shaped Sb2Mo2 ring. The cyclopentadiene rings are trans to each other and Mo–Sb and Sb–Sb separations are both short. An iron analogue could not be obtained from [SbPh2BrO]2 and Na[Fe(CO)2(η5-C5H5)] but a mixture of SbPh[Fe(CO)2(η5-C5H5)]2 and SbPh2[Fe(CO)2(η5-C5H5)] was obtained using SbPh2Cl. An X-ray structure for SbPh[Fe(CO)2(η5-C5H5)]2 shows an open stibinidine structure.  相似文献   

2.
The metallation of the η5-C5H5(CO)2Fe-η15-C5H4Mn(CO)3 complex with BunLi (THF, ?78 °C) followed by the treatment of the lithium derivative with Ph2PCl afforded the η5-Ph2PC5H4(CO)2Fe-η15-C5H4Mn(CO)3 complex. The reaction of the latter with η5-C5H5(CO)3WCl in the presence of Me3NO produced the trinuclear complex η5-C5H5Cl(CO)2W-η15-(Ph2P)C5H4(CO)2Fe-η15-C5H4Mn(CO)3. The structure of the latter complex was established by IR, UV, and 1H and 31P NMR spectroscopy and X-ray diffraction. The reaction of MeSiCl3 with three equivalents of LiC5H4(CO)2Fe-η15-C5H4Mn(CO)2PPh3 gave the hexanuclear complex MeSi[C5H4(CO)2Fe-η15-C5H4Mn(CO)2PPh3]3.  相似文献   

3.
It is shown that (1,2,7-η3-2-Me-benzyl)(η5-C5H5)Mo(CO)2 exits in solution as one isomer which is fluxional, probably via (7-η1-2-Me-benzyl)((η5-C5H5)Mo(CO)2, with ΔG370 = 23.6 ± 1.0 kcal mol−1. In contrast, (1,2,7-η3-3-Me-benzyl)(η5-C5H5)Mo(CO)2 exits as two isomers at −20°C, which undergo interconversion at room temperature with ΔG 15.7 kcal mol−1. This dynamic process is an allyl rotation. It is probable that there is also a low energy [1,5]-sigmatropic shift.  相似文献   

4.
Thermolysis of cyclooctaselenadiazole (2) yields only selenium-containing products. Compound 2 reacts with CpCo sources to give [(η5-C5H5)CO]22η32-C8H6Se), a fluxional compound whose structure has been determined by X-Ray crystallography.  相似文献   

5.
6.
The electron distributions and bonding in Ru3(CO)9( 3- 2, 2, 2-C6H6) and Ru3(CO)9( 3- 2, 2, 2-C60) are examined via electronic structure calculations in order to compare the nature of ligation of benzene and buckminsterfullerene to the common Ru3(CO)9 inorganic cluster. A fragment orbital approach, which is aided by the relatively high symmetry that these molecules possess, reveals important features of the electronic structures of these two systems. Reported crystal structures show that both benzene and C60 are geometrically distorted when bound to the metal cluster fragment, and our ab initio calculations indicate that the energies of these distortions are similar. The experimental Ru–Cfullerene bond lengths are shorter than the corresponding Ru–Cbenzene distances and the Ru–Ru bond lengths are longer in the fullerene-bound cluster than for the benzene-ligated cluster. Also, the carbonyl stretching frequencies are slightly higher for Ru3(CO)9( 3- 2, 2, 2-C60) than for Ru3(CO)9( 3- 2, 2, 2-C6H6). As a whole, these observations suggest that electron density is being pulled away from the metal centers and CO ligands to form stronger Ru–Cfullerene than Ru–Cbenzene bonds. Fenske-Hall molecular orbital calculations show that an important interaction is donation of electron density in the metal–metal bonds to empty orbitals of C60 and C6H6. Bonds to the metal cluster that result from this interaction are the second highest occupied orbitals of both systems. A larger amount of density is donated to C60 than to C6H6, thus accounting for the longer metal–metal bonds in the fullerene-bound cluster. The principal metal–arene bonding modes are the same in both systems, but the more band-like electronic structure of the fullerene (i.e., the greater number density of donor and acceptor orbitals in a given energy region) as compared to C6H6 permits a greater degree of electron flow and stronger bonding between the Ru3(CO)9 and C60 fragments. Of significance to the reduction chemistry of M3(CO)9( 3- 2, 2, 2-C60) molecules, the HOMO is largely localized on the metal–carbonyl fragment and the LUMO is largely localized on the C60 portion of the molecule. The localized C60 character of the LUMO is consistent with the similarity of the first two reductions of this class of molecules to the first two reductions of free C60. The set of orbitals above the LUMO shows partial delocalization (in an antibonding sense) to the metal fragment, thus accounting for the relative ease of the third reduction of this class of molecules compared to the third reduction of free C60.  相似文献   

7.
The complex (η5-C5H5)Cr(CO)3Cp42 H5 has been made and its reactions with σ donor ligands L (L = (MeO)3P and (EtO)3P) and with SO2 studied. The alkyl phosphites give compounds of the composition (η5-C5H5)Cr(CO)2LC2H5, and sulfur dioxide gives the corresponding S-sulfinato (η5-C5H5)Cr(CO)3SO2C2H5.  相似文献   

8.
The reaction of μ-alkyne-bridged dimolybdenum compound [Mo2(μ-C2HPh)(CO)4(η5-C5H4C(O)Me)2] 1 with Co2(CO)8 in refluxing toluene gave a new butterfly compound [Co2Mo2(μ4-C2HPh)(μ-CO)4(CO)4(η5-C5H4C(O)Me)2] 2 which was fully characterized by elemental analysis, IR, 1H NMR and X-ray single crystal diffraction techniques. 2 crystallized in monoclinic system, C30H20Co2Mo2O10, Mr=850.23, space group P21/a(#14), a=14.165(5), b=12.498(2), c=16.204(2)(A), β = 96.50(2)°, V = 2850(1)(A)3, Z = 4, Dc = 1.981 g cm-3, F(000)=1672, μ(MoKα)=20.41 cm-1, final R=0.030, Rw=0.039 for 4831 observable reflections with I>2σ(I). The structure contains a Co2Mo2 butterfly core, and each Mo-Co bond is spanned by an asymmetric semi-bridging carbonyl ligand.  相似文献   

9.
The complex t-Bu(η5-C5H5)FE(CO)2 has been treated with triphenylphosphine in refluxing THF to produce t-BuCO(η5-C5H5)Fe(CO)(PPh3). The large steric bulk of the t-butyl group suggests that this reaction should be faster than the reaction involving the methyl group, and a kinetic investigation illustrates this to be the case. The same steric bulk predicts that the reaction with SO2 should be slow, and indeed we have been unable to effect the related SO2 insertion reaction. Attempts to prepare the corresponding t-Bu(η5-C5H5)W(CO)3 led to formation of the related isobutyl complex.  相似文献   

10.
Irradiation at λ = 507 and 391 nm of [Mo25-C5H5)2(CO)6] in a degassed tetrahydrofuran (THF) or THF-MeOH solution containing nitrite gives [Mo(η5-C5H5)2NO] and several oxo complexes including [{Mo(η5-C5H5)(O)2}2O] in good yields. The quantum yields for the disappearance of [Mo25-C5H5)2(CO)6] in the reaction with NO2 depend on the nitrite concentration, thus suggesting participation of the metal-radical intermediate in the reduction of nitrite. Reactions of [Mo25-C5H5)2(CO)4] with nitrite or nitrate in the dark give the same nitrosyl and oxo complexes as above. An oxygen atom in nitrite or nitrate is mainly transferred onto the molybdenum atom both in the photochemical and the dark reactions.  相似文献   

11.
The complex {[η5-C5H5Mo(CO)2]2(μ,η2-Sb2)} (1), synthesized from the thermolytic reaction of [η5-C5H5Mo(CO)3]2 and elemental antimony, is the first example of μ,η2 coordination of a four-electron diantimony fragment to a transition metal dimer. As determined by X-ray crystallography, 1 is a tetrahedral cluster characterized by a very short SbSb bond of 2.678(1) Å bound side-on to form a plane nearly perpendicular to an elongated MoMo bond of 3.114(1) Å.  相似文献   

12.
The complex (Cp2Ti)2AlH4Cl has been isolated from the catalytic system (Cp2TiCl)2-LiAlH4, which is a precursor of the catalyst for the hydrogenation and isomerization of olefins. This complex has been studied by X-ray diffraction. The complex forms rhomboidal crystals with unit cell dimensions a = 10.414, b = 11.998, c = 16.008 Å, space group P212121, Z = 4, and density ϱcalc = 1.40 g/cm3. The Cp2Ti moieties are linked to the Al atom via double hydrogen bridges; the Cl atom is bonded to the Al atom. Analysis of the EPR spectral data and some chemical properties of (Cp2Ti)2AlH4Cl solutions has led us to suggest a mechanism for the formation of the catalytically active species upon interaction of this compound with olefins and solvating solvents.  相似文献   

13.
The salts [Fe2η55-C5H4CH{NMe3)CH(NMe2)C5H4}(CO)2(μ-CO)2][X] (X = I or SO3CF3) are the synthetic precursors to a wide range of [Fe2(η-C5H5)2(CO)2(μ-CO)2] derivatives in which the two cyclopentadienyl ligands are joined by a two-carbon bridge.  相似文献   

14.
Wang  Mei  Miguel  Daniel  Riera  Víctor  Bois  Claudette  Jeannin  Yves 《Transition Metal Chemistry》2001,26(4-5):566-569
A novel dimolybdenum complex [(3-C3H5)(CO)2Mo(-S2CPCy3)Mo(3-CH2CMeCH2)(CO)2], obtained by reacting the [(CO)2(3-C3H5)Mo(-S2CPCy3)Mo(CO)3] anion with an excess of ClCH2CMe=CH2, has been characterized by i.r., 31P{1H}, 1H- and 13C-n.m.r. spectroscopy and by elemental analysis. The crystal structure of the complex, determined by X-ray diffraction, shows a definite preference for the central carbon of the S2CPCy3 bridge to bind to the Mo(2) atom coordinated by 3-2-methylallyl, rather than the Mo(1) atom attached to unsubstituted 3-allyl ligand.  相似文献   

15.
《Comptes Rendus Chimie》2002,5(4):319-324
The ligand substitution by diphosphine L–L on (η5-C5H5)Fe(CO)2I usually results in the chelated 〚(η5-C5H5)Fe(CO)(η2-L–L)+〛〚I〛 product exclusively. One could suppress the chelated complexes and selectively prepare the bridged 〚{(η5-C5H5)Fe(CO)2}2(μ-L–L)2+〛 complexes by application of the electron-transfer chain catalysis with a chemical initiation. Introducing a catalytic amount of reductant at low temperature to the mixture of 2:1 (η5-C5H5)Fe(CO)2I/L–L in THF selectively produces the bridged complexes in 78–93% isolated yields where L–L is Ph2P(CH2)nPPh2, n = 1–4, or (η5-C5H4PPh2)2Fe.  相似文献   

16.
Irradiation of CpMn(CO)3 in liquid ethane at 135 K at 355 nm yields a photoproduct that exhibits ν(CO) bands in the IR spectrum shifted to low wavenumber with respect to CpMn(CO)3 that are indicative of a Mn(i) dicarbonyl. Parallel experiments employing in situ irradiation within an NMR probe (133 K, 355 nm photolysis) reveal the 1H NMR signals of this product and confirm its formulation as the σ-ethane complex CpMn(CO)22-C1–H-ethane). The resonance of its coordinated C–H group is observed at δ –5.84 and decays with lifetime of ca. 360 s. Analogous photolysis experiments in isopentane solution with IR detection produce CpMn(CO)22-CH-isopentane) with similar IR bands to those of CpMn(CO)22-CH-ethane). 1H NMR spectra of the same species were obtained by irradiation of CpMn(CO)3 in a 60 : 40 mixture of propane and isopentane; three isomers of CpMn(CO)22-CH-isopentane) were detected with coordination of manganese at the two inequivalent methyl positions and at the methylene group, respectively. The lifetimes of these isomers are ca. 380 ± 20 s at 135 K and do not vary significantly from each other. These σ-complexes of manganese are far more reactive than those of related CpRe(CO)2(alkane) complexes which are stable in solution at 170–180 K. The room temperature lifetimes of CpMn(CO)22-CH-ethane) and CpMn(CO)22-CH-isopentane), as determined by TRIR spectroscopy, are 2.0 ± 0.1 and 28 ± 1 μs, respectively.  相似文献   

17.
Mild, reductive carbonylation of (C5Me5)TaCl4 in the presence of trimethylphosphine gives (C5Me5)Ta(CO)4 in 47% yield. The intermediate (C5Me5)TaCl2- (CO)2(PMe3) has been isolated from the reaction of (C5Me5)TaCl2(PMe3)2 with carbon monoxide and its crystal structure determined (space group P212121).  相似文献   

18.
The structure of a new ansa compound, (5-C5H4)CMe2(5-C9H6)TiCl2 (1), was studied by X-ray analysis:a = 15.00(1),b =15.500(5),c = 13.032(4) Å, = 92.66°(4),V = 3025.1(1) Å3, space groupP21/.,R = 0.038. The distorted tetrahedral coordination sphere of the Ti atom is formed by two Cl atoms and two -ligands. It was proposed that the angle () between theC-M direction and the line normal to M-Cp can be considered as one of the geometric parameters characteristic of the structure-properties correlation.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 2, pp. 305–308, February, 1995.  相似文献   

19.
Density functional theory calculations have been performed for the dimethylgallyl complexes of iron, ruthenium, and osmium [(η(5)-C(5)H(5))(L)(2)M(GaMe(2)] (M = Fe, Ru, Os; L = CO, PMe(3)) at the DFT/BP86/TZ2P/ZORA level of theory. The calculated geometry of the iron complex [(η(5)-C(5)H(5))(CO)(2)Fe(GaMe(2))] is in excellent agreement with structurally characterized complex [(η(5)-C(5)H(5))(CO)(2)Fe(Ga(t)Bu(2))]. The Pauling bond order of the optimized structures shows that the M-Ga bonds in these complexes are nearly M-Ga single bond. Upon going from M = Fe to M = Os, the calculated M-Ga bond distance increases, while on substitution of the CO ligand by PMe(3), the calculated M-Ga bond distances decrease. The π-bonding component of the total orbital contribution is significantly smaller than that of σ-bonding. Thus, in these complexes the GaX(2) ligand behaves predominantly as a σ-donor. The contributions of the electrostatic interaction terms ΔE(elstat) are significantly smaller in all gallyl complexes than the covalent bonding ΔE(orb) term. The absolute values of the ΔE(Pauli), ΔE(int), and ΔE(elstat) contributions to the M-Ga bonds increases in both sets of complexes via the order Fe < Ru < Os. The Ga-C(CO) and Ga-P bond distances are smaller than the sum of van der Waal radii and, thus, suggest the presence of weak intermolecular Ga-C(CO) and Ga-P interactions.  相似文献   

20.
The complex (η5-C5H5NiO(s)3(μ-H)3(CO)9 (1 reacts with phosphines in the presence of Me3NO to give monosubsituted derivatives, the main products, along with smaller amounts of disubstituted derivatives. The IR and NMR spectroscopic characterizations of two representative disubstituted derivatives are described.The crystal structure of (η5-C5H5)NiO(s)(μ-H)3(CO)7(PMe2Ph)2 has been determined by X-ray diffraction. The crystals are monoclinic, space group P21/a with Z = 4 in a unit cell of dimensions a 18.198(8), b 20.865(8), c 8.656(5) Å, β 99.67(2)°. The structure was solved by direct and Fourier methods and refined by full-matrix least-squares to R = 0.061 for 3139 observed reflections. The structure can be regarded as derived from that of 1 (which has a tetrahedral NiO(s) core with three hydride hydrogen atoms bridging the OsOs edges, a cyclopentadienyl group coordinated to the Ni atom,and nine terminal carbonyls bound to the Os atoms, three for each Os atom) by replacing two axial carbonyls by two PMe2Ph ligands.  相似文献   

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