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1.
Photolysis of a solution of Cp*RuCp (1) in CF3CO2H generates salt [CpRu(C5Me4CH2)]-(O2CCF3)(2 • O2CCF3). The reaction of compound 1 with oleum at 20 °C through the intermediate dication [η5-(CH2C5Me4)Ru(μ:η55-C5H4C5H5)Ru(C5Me4CH2)-η6]2+ leads to the triply charged cation η7CH2)2C5Me3Ru(μη55-C5H4C5H4)Ru(C5Me4CH2)-η6]3+. Synthesis of pentamethylmetallocene derivatives CpMC5Me4X (M = Ru, Fe; X = CHO, CH2OH, CH2An) has been accomplished. The reactions of 1-hydroxymethyl-2,3,4,5-tetramethylruthenocene with acids CF3CO2H, HBF4, CF3CO2H/NaB[C6H3(CF3)2]4, and picric acid C6H2(NO2)3OH afforded salts 2•X (X = CF3CO2, BF4, B[C6H3(CF3)2]4), and (2,3,4,5-tetram ethylruthenocenyl)methyl picrate [CpRu(C5Me4CH2)-η6][(C6H2(NO2)3O] (2•C6H2(NO2)3O). Structure of the latter was characterized by single crystal X-ray diffraction.  相似文献   

2.
N2(A, υ = 0-3) produced by the Ar(3P0,2) + N2 reaction and detected by laser-induced fluorescence undergoes rapid, stepwise vibrational relaxation but slow electronic quenching with added CH4 or CF4. Rate constants, kQυ, of 1.5, 3.1, and 5.0 × 10?12 cm3 s?1 are measured for Q = CH4, υ = 1-3, and 0.47, 1.8, and 5.5 × 10?12 cm3 s?1 for Q = CF4, υ = 1-3, with ≈±20% accuracy (1σ). Information is also obtained for the unrelaxed, relative υ populations.  相似文献   

3.
The ionic complex [(π-C5H5)2Zr(H2O)3]2+(CF3SO3?)2·THF, which corresponds to the 18-electron rule, is formed in the reaction of (π-C5H5)2Zr(CF3SO3)2(THF) with H2O in tetrahydrofuran. It crystallizes in the hexagonal space group P63 with Z = 6 and unit cell dimensions at ? 100°C of a 21.945(5) and c 8.711(3) Å. The geometry of the (π-C5H5)2Zr moiety (length of the vectors between Zr and the C5 ring centroids: 2.210 and 2.193 Å; angle between these vectors: 129.0°; angle between the C5 ring normals: 128.3°) agrees with that of neutral, four-coordinate (π-C5H5)2ZrX2 compounds. The three H2O ligands lie in the plane that bisects the angle between the C5 ring planes. The ZrO distances are 2.239(7), 2.195(7), and 2.261(7) Å. The CF3SO3? anions and the THF molecule of crystallization are packed around the complex cation in such a way that their oxygen atoms point towards the H2O ligands. The CF3 sides of the anion, on the other hand, are clustered together so as to produce hydrophobic domains in the crystal structure.  相似文献   

4.
The crystal stuctures of [(η5-C5H5)Fe(CO)2]2(CH2)n, n = 3 and 4, have been determined.[(η5-C5H5)Fe(CO)2]2(CH2)3: a = 21.20, b = 10.39, c = 7.88Å, β = 101.6°, U = 1699Å3, C2/c, Z = 4, R = 0.059, 1036 observed data.[(η5-C5H5)Fe(CO)2]2(CH2)4: a = 7.63, b = 10.54, c = 21.87Å, β = 96.4°, U= 1748Å3, P21/c, Z = 4, R = 0.051, 1418 observed data.In each compound the iron atoms are joined by simple chains of sigma bonded CH2 groups. Bond lengths are similar in both: mean Fe-CO 1.75, C-O 1.15, FeC(cp) 2.11, FeCH2 2.08, (cp)CC(cp) 1.41, CH2CH2 1.55Å. The (CH2)3 compound retains a 2-fold axis of symmetry in the crystal. The (CH2)4 compound has no imposed symmetry, but closely approximates centrosymmetry. The effects of molecular symmetry on the IR spectrum between 2100 and 1900 cm-1 are discussed. The13C and1H (270 MHz) NMR spectra in solution are shown to be consistent with the structures found crystallographically.  相似文献   

5.
5-C5(CH3)5]Co(O2C6H4) crystallizes in the orthorhombic space group Pnma with a 12.942(4), b 12.902(4), c 8.543(3) Å, V 1426(1) Å3, and Z = 4. Least-squares refinement of 1688 independent observed reflections, F(obs) ? 2.5σ(Fobs), gives RF 3.79 and RwF 3.72%. The cyclopentadienyl ring contains two short (1.412(3) Å) and three longer (〈av〉 1.430(4) Å) CC bond lenghts, consistent with a slight preference for diolefin bonding. The O2C6H4 fragment is best described as a catecholate with a CO bond distance of 1.338(3), and a CoO distance of 1.837(2) Å.  相似文献   

6.
Reaction of photogenerated (η5?C5H5)2W2(CO)4 with acetylene at 25°C yields a complex of the formula (η5-C5H5)2W2(CO)4(C2H2). The crystal structure of the complex shows it to have a tetrahedrane-like W2C2 core. The C—C bond distance of the C2H2 unit is 1.33 Å which is close to that of ethylene, considerably longer than the 1.20 Å for acetylenes. The W—W distance is 2.987 Å which is ~0.25 Å shorter than the W—W distance in (η5-C5H5)2W2(CO)6 but longer than that expected for (η5-C5H5)2W2(CO)4. By analogy to the parent (η5-C5H5)2M2(CO)6 species, the near-UV absorption in (η5-C5H5)2M2(CO)4(C2H2) is assigned to a σb → σ* transition. Owing to the shorter M—M bond in the C2H2 adducts, the σb → σ* absorption is at higher energy than in the (η5-C5H5)2M2(CO)6 complexes.  相似文献   

7.
The fluorocarbon soluble, binuclear ruthenium(I) complexes [Ru(μ-O2CMe)(CO)2LF]2, where LF is the perfluoroalkyl substituted tertiary phosphine, P(C6H4-4-CH2CH2(CF2)7CF3)3, or P(CH2CH2(CF2)5CF3)3, were synthesized and partition coefficients for the complexes in fluorocarbon/hydrocarbon biphases were determined. Catalytic hydrogenation of acetophenone to 1-phenylethanol in benzotrifluoride at 105 °C occured in the presence of either [Ru(μ-O2CMe)(CO)2P(C6H4-4-CH2CH2(CF2)7CF3)3]2 (1) or [Ru(μ-O2CMe)(CO)2P(CH2CH2(CF2)5CF3)3]2 (2). The X-ray crystal structure of [Ru(μ-O2CMe)(CO)2P(CH2CH2(CF2)5CF3)3]2 was determined. The compound exhibited discrete regions of fluorous and non-fluorous packing.  相似文献   

8.
Approximate vibrational energy distribution for CH*2(1A1) from diazomethane photolyses at 4358 and 3660 Å have been determined to be reasonably broad. These distributions apply to CH*2(1A1) at the time of reaction with cyclobutane and were deduced from the internal energy distribution of the formed chemically activated methylcyclobutane. An apparent anomaly in the pressure dependence of the decompositions of CH2(1A1) generated chemically molecules is explained. The anomaly pertains to the relative behavior of systems utilizing ketene and diazomethane photolyses as CH2(1A1) sources. The explanation offered is that the vibrational energy distributions for CH*2(1A1) are narrow for ketene photolyses at 3340 or 3130 Å and broad for diazomethane photolyses at 4358 or 3660 Å.  相似文献   

9.
The reaction of Li(CH3)3CC5H4 with SnCl2 in THF affords 1,1′-di-t-butylstannocene in 78% yield as an air-sensitive oil. 1H and 13C NMR spectra are consistent with a pentahapto-structure. Mössbauer parameters of the stannocene and its trimethylsilyl counterpart match closely those of known stannocenes and neither compound appears to undergo oligomerization. The reaction of 1,1′-di-t-butylstannocene with BF3 in CH2Cl2 affords η5-(CH3)3CC5H4Sn+ BF4? and other uncharacterized product(s) thought to involve tetracoordinate tin. The structure of η5-(CH3)3CC5H4Sn+ BF4? was determined by single crystal X-ray diffraction (orthorhombic,Pbcn, (T 25°C), a 18.423(3), b 11.723(1), c 11.044(2) Å, Z Å, m.p. 95–96°C, colorless, Mo-Kα, R = 0.043).  相似文献   

10.
The title compound has been prepared by reaction of (C5H5)2Cr with oxindole (indole with CO in place of CH2 at the 2-position). Red single crystals belong to space group P21/c with a = 10.107(4) Å, b = 22.496(7) Å, c = 9.210(3) Å, β = 93.26(3)°, V = 2091(2), and Z = 2. The centrosymmetric molecule has a CrCr distance of 2.495(4) Å. The mean CrO and CrN distances for the bonds to bridging oxindolate anions are 2.024(7) and 2.065(8) Å, respectively. There is an oxindole molecule bound at each end with a CrO axial bond of length 2.341(8) Å and a hydrogen bond from the oxindole NH group to an equatorial oxygen atom of length 2.83(1) Å. The significance of this compound with respect to CrCr bonding is discussed.  相似文献   

11.
C2(a 3πu) disappearance rate constants of 1.44, 0.96, 0.0296, 0.0130 and < 10?6(x10?10cm3s?1) are reported for reactions with C2H4, C2H2, O2, C2H6, and CH4, respectively at 298 K. C2(a 3πu) fragments are generated by multiphoton ArF excimer laser photodissociation at C2H2, and monitored by dye laser induced fluorescence. Arguments are presented which favor chemical reactions over the C2(a 3πu) → (X 1σ+g) quenching channel. C2 + C2H2 represents the one possible exception to the reactive channel.  相似文献   

12.
The structure of Rh2(CH3CO2)4(DMF)2 {DMF = HCON(CH3)2} has been determined by single crystal X-ray methods. The compound crystallizes with eight formula units in a cell of dimensions: a = 29.438(7) Å, b = 7.978(2) Å, c = 20.279(5) Å, β = 113.20(4)°, V = 4377.5 Å3, space group C2/c. The structure has been refined by full-matrix least-squares method to a final R = 0.030 for the 4156 observed data. Two Rh(II) atoms are linked by four acetate groups forming a dimeric unit, where the RhRh distance is 2.383(1) Å. The coordination sphere about each Rh atom is completed by a DMF molecule; the average RhO(DMF) distance is 2.296(3) Å.  相似文献   

13.
Decavanadates with complex cations, (NH4)2[Zn(H2O)5(NH3CH2CH2COO)]2V10O28·4H2O (4) and (NH4)2[Mn(H2O)5(NH3CH2CH2COO)]2V10O28·2H2O (5), have been prepared and characterized by elemental analysis, i.r., Raman, UV–vis. and 51V-n.m.r. spectroscopies and by thermal analysis. The X-ray structure determination revealed, both in 4 and 5, the presence of complex cations with hexacoordinated central atoms and monodentate β-alanine ligands, and decavanadate V10O28 6− anions. The differences in the structural arrangement in 4 and 5 are probably a consequence of the different ionic radii of Zn2+ and Mn2+ (high spin).  相似文献   

14.
The synthesis and X-ray single crystal study of two mixed-ligand Cu(II) complexes are performed: (CH3C(NCH3)CHC(O)CH3)(CF3C(O)CHC(O)CF3)Cu (1) (space group P21/c, a = 7.0848(12) Å, b = 17.854(3) Å, c = 11.837(2) Å, β = 100.495(6)°, V = 1472.4(4) Å3, Z = 4), (CH3C(NC6H5)CHC(O)CH3)· (CF3C(O)CHC(O)CF3)Cu (2) (space group P-1, a = 9.1119(4) Å, b = 9.6954(4) Å, c = 11.1447(6) Å, α = 113.784(2)°, β = 92.383(2)°, γ = 95.402(2)°, V = 893.52(7) Å3, Z = 2). The structures are molecular, formed from neutral mixed-ligand copper complexes. The central copper atom has the (3O+N) coordination environment with average Cu-O distances of 1.948 Å and Cu-N of 1.932 Å; the chelate O-Cu-N angle (average) is 94.0°. In the structures, the complexes are linked into dimeric associates with Cu…Cu distances of 3.197 Å (for 1) and 3.246 Å (for 2). The volatility of mixed-ligand complexes 1 and 2 is in between of that of the starting homo-ligand complexes.  相似文献   

15.
Syntheses and single-crystal X-ray diffraction studies have been completed on two cycloruthenapentadienyl (CO)6Ru2L2 derivatives, with L = CH2OHC = CCH2OH and C2H5C=CCH2CH2OH respectively. Crystal data are as follows: for [(CO)3RuC4(CH2OH)4]Ru(CO)3·H2O, P21/c, a 13.72(1), b 9.501(4), c 14.86(1) Å, β 101.10(6)°, Rw = 0.052 for 1911 reflections; for [(CO)3RuC4(CH2CH2OH)2(C2H5)2]Ru(CO)3, P21/c, a 9.191(3), b 16.732(4), c 14.903(3) Å, β 113.61(4)°, Rw = 0.042 for 2865 reflections. Both compounds are built up from binuclear units, each unit being regarded as a Ru(CO)3 fragment π-bonded to a cycloruthenapentadienyl ring. The molecular parameters are compared with those of known cyclometallapentadienyl complexes of transition metals. The presence of a semi-bridging CO group is discussed.  相似文献   

16.
This Letter reports on the application of the vacuum ultraviolet laser-induced fluorescence detection of Br(2P1/2) atoms at 157.48 nm to the kinetic study of collisional removal of Br(2P1/2) by small molecules at 295 K. Gas mixtures of a small amount of CH3Br and an excess amount of collision partners are exposed to pulsed laser irradiation at 193 nm. Temporal decay profile of the Br* LIF intensity has been monitored to determine the collisional removal rate coefficients. The collision partners are H2, CO2, CF4, CF2H2, H2O, CH3OH, and SF5CF3, and the results are compared to literature data.  相似文献   

17.
Complexes of the type [Ir(COD){P(p-RC6H4)3}2]A (R  Cl, F, H, CH3 or CH3O; A  ClO4? or B(C6H5)4?) have been prepared and their reactions with halogens, methyl iodide, chlorotrimethylsilane, carbon monoxide and hydrogen have been studied. The catalytic activity of the complexes in the hydrogenation of mono- and diolefins depends upon the basicity of the phosphine present.  相似文献   

18.
The halogenocarboxylates (cyclo-C6H11)3SnO2CR′, (R′ = CH3, CH2Cl, CHCl2, CCl3 and CF3) have been prepared, and characterized by Mössbauer and IR spectroscopy. The crystal structure of (cyclo-C6H11)3SnO2CCF3 has been determined by X-ray analysis. The crystals are orthorhombic, space group Pcmn, with unit cell parameters a 14.390 ± 0.004, b, 13.427 ± 0.004, c 11.516 ± 0.003 Å. The structure was resolved by Patterson methods and refined to an R value of 0.147. The coordination about the tin atom can be considered distorted trigonal-pyramidal or distorted tetrahedral. Mössbauer data are explained in terms of distortions of bond angles about the tin atom.  相似文献   

19.
Cu2(CF3COO)4 · 2 CH3CN ( I ) and Cu(CF3COO)2(H2O)4 ( II ) have been prepared by concentrating of acetonitrile and aqueous solutions respectively. According to X-ray data, the complex I consists of binuclear molecules with Cu–O 1.969 Å, Cu–N 2.114 Å. The Cu…Cu distance was found to be 2.766 Å, one of the longest for dimeric structures, apparently, due to the high acidity of trifluoroacetic acid. The coordination environment of Cu atom in II can be described as 4 + 2: 2 Cu–O (H2O) 1.937 Å, 2 Cu–O (CF3COO) 1.985 Å, 2 Cu–O (H2O) 2.447 Å. The mononuclear structure is stabilized by formation of two intra- and six intermolecular hydrogen bonds.  相似文献   

20.
Ab initio calculations employing an extended 4-31G basis set have been applied to the highly fluorinated molecules, CF3O2H, CF3O2F and CF2(OF)2. Partial geometry optimizations have also been carried out on these molecules allowing a comparison between theory and the recently completed gas-phase electron diffraction results. The O-O bond distance in CF3O2 H is found to be longer (by 0.02 Å) than the corresponding bond in CF3O2F while the CO bond is found to be shorter (by 0.02 Å) in CF3O2H. The OF bond in CF3O2F is found to be longer (by 0.03–0.04 Å) than the corresponding bond in CF3OF or F2O. Torsional barriers have been computed for CF3O2H and CF3O2F with the aid of Fourier analysis of the potential curves. CF3O2H is found to have a torsional potential about the peroxide bond rather similar to that found for H2O2 while in CF3O2F the cis and trans barriers are predicted to be much larger (14.6 and 8.4 kcal mol?1, respectively). The threefold barrier to rotation of the CF3 group in CF3O2F is predicted to be 4.4 kcal mol?1. Various conformations of CF2(OF)2 have also been studied with conformations consistent with the operation of the gauche-effect being most stable. Bond separation energies and molecular properties have also been computed for these molecules.  相似文献   

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