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1.
The crystal structures of (Ti1?xScx)2O3, x = 0.0038, 0.0109, and 0.0413, and of (Ti0.99Al0.01)2O3, have been determined from X-ray diffraction data collected from single crystals using an automated diffractometer, and have been refined to weighted residuals of 25–34. Cell constants have also been determined for x = 0.0005, 0.0019, and 0.0232. The compounds are rhombohedral, space group R3c, and are isomorphous with α-Al2O3. The hexagonal cell dimensions range from a = 5.1573(2)Å, c = 13.613(1)Å for (Ti0.9995Sc0.0005)2O3 to a = 5.1659(4)Å, c = 13.644(1)Å for (Ti0.9587Sc0.0413)2O3, and a = 5.1526(2)Å, c = 13.609(1)Å for (Ti0.99Al0.01)2O3. Sc and Al substitution cause similar increases in the short near-neighbor metal-metal distance across the shared octahedral face; for Sc doping the increase is from 2.578(1) Å in pure Ti2O3 to 2.597(1) Å in (Ti0.9587Sc0.0413)2O3. By contrast, changes in the metal-metal distance across the shared octahedral edge appear to be governed by ionic size effects. The distance increases from 2.994(1) Å in Ti2O3 to 3.000(1) Å in (Ti0.9587Sc0.0413)2O3 and decreases to 2.991(1) Å in (Ti0.99Al0.01)2O3.  相似文献   

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The reactions between the phosphine-organoiron [CpFeII6-C6Me5CH2PPh2]+ PF6? (1) and [RhCl(η4-diolefin)(μ-Cl)]2 in CH2Cl2 at reflux give the new heterobinuclear air-stable crystalline complexes [CpFeII6-C6Me5CH2)P(Ph)2Rh(η4-diene)Cl]PF6,(D'*-diene=cyclooctadiene (COD): 65%, 2; trimethylfluorobenzobicyclo[2.2.2]octadiene (Me3TFB): 48%, 3). Complexes 2 and 3 have been studied by 1H, 13C and 31P NMR spectroscopy and they are carbonylated (CO, 1 atm). Cyclic voltammetry experiments with addition of MeOH show electron transfer FeIRhI → FeIIRh0, the presence of a catalytic wave FeI/FeII and the possible formation of Rh hydrides. Under normal conditions 2 is a catalyst for hydrogenation of cyclohexene, but it is less efficient than the known mononuclear Rh1 analogues.  相似文献   

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trans-PtH2[As(t-Bu)3]2 was prepared in very good yield by afacile reaction of K2PtC14 with As(t-Bu)3 in alkaline ethanol. Treatment of trans-PtH2[As(t-Bu)3]2 with CF3CO2H or HCI afforded trans-PtH(O2CCF3)[As(t-Bu)3]2 or trans-PtHCl[As(t-Bu)3]2. respectively, in almost quantitative yield.  相似文献   

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13C and 19F chemical shift studies of a series of CH2M(CH3)3 and CH2M(C6H5)3 (M  Si, Ge, Sn, Pb) - substituted aryl derivatives (phenyl; 1-naphthyl; 2-naphthyl) have established unambiguously that the order of hyperconjugative electron release in the neutral ground state is Pb>Sn>Ge>Si. This order is clearly at variance with the commonly accepted order(Pb>Sn>Ge>Si) based on studies of electron deficient substrates. The phenomenon is discussed in terms of current theories on σ-π interactions. In addition, substituent parameters (σI and σRo) for the PB(CH3)3 group have been derived utilizing new data from the fluorophenyl tag. These new constants are compared with those previously reported.  相似文献   

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195Pt, 119Sn and 31P NMR characteristics of the complexes trans-[Pt(SnCl3)(carbon ligand)(PEt3)2] (1a-1e) are reported, (carbon ligand = CH3 (1a), CH2Ph (1b), COPh (1c), C6Cl5 (1d), C6Cl4Y (e); Y = meta- and para-NO2, CF3, Br, H, CH3, OCH3, or Pt(SnCl3)(PEt3)2. The values of 1J(195Pt, 119Sn) vary from 2376 to 11895 Hz with the COPh ligand having the smallest and the C6Cl5 ligand the largest value, making a total range for this coupling constant, when the dimer syn-trans-[PtCl(SnCl3)(PEt3)]2 is included, of ca. 33000 Hz. In the meta- and para-substituted phenyl complexes 1J(195Pt, 119Sn) (a) is greater for electron-withdrawing substituents, (b) varies more for the meta-substituted derivatives (5634 to 7906 Hz) than for the para analogues (6088 to 7644 Hz) and (c) has the lowest values when the Pt(SnCl3)(PEt3)2 group is the meta- or para-substituent. The direction of the change in 1J(195Pt, 119Sn) is opposite to that found for 1J(195Pt, 119P). For the aryl complexes linear correlations are observed between δ(119Sn), 1J(195Pt, 119Sn), 1J(195Pt, 31P), 1J(119Sn, 31P) and the Hammett substituent constant σn. δ(119Sn) and 1J(195Pt, 119Sn) are related linearly to v(Pt-H) in the complexes trans-[PtH(C6H4Y)(PEt3)2]; δ(119Sn) and δ(1H) (hydride) are also linearly related. Based on 1J(195Pt, 119Sn), the acyl ligand is suggested to have a very large NMR trans influence. The differences in the NMR parameters for (1a-e) are rationalized in terms of differing σ- and π-bonding abilities of the carbon ligands.The structure of 1c has been determined by crystallographic methods. The complex has a slightly distorted square planar geometry with trans-PEt3 ligands. Relevant bond lengths (Å) and bond angles (°) are: PtSn, 2.634(1), PtP, 2.324(4) and 2.329(4), PtC, 2.05(1); PPtP, 170.7(6), SnPtC, 173.0(3), SnPtP, 92.1(1), 91.7(1), PPtC, 88.8(4) and 88.3(4). The PtSn bond separation is the longest yet observed for square-planar platinum trichlorostannate complexes, and would be consistent with a large crystallographic trans influence of the benzoyl ligand. The PtSn bond separation is shown to correlate with 1J(195Pt, 119Sn).  相似文献   

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Chelate complexes of the type (CO)4MnPMe2CH2Ch2SiX2 (X = Me, Cl) have been prepared from Na[Mn(CO)5] and HMn (CO)5, respectively, by two-step reactions with the ligands Me2PCH2CH2SiX2R′ using alkali salt, amine or HCl elimination. (CO)4MnPMe2Ch2CH2SiCl2 is also obtained by cleavage of Mn2(CO)10 with Me2PCH2CH2SiCl3. IN the case of HMn (CO)5 the intermediates (CO)4Mn (H) L [L = Me2PSiMe3, Me2PCH2CH2SiMe2 (NMe2), Me2PCH2CH2SiCl2 (NMe2] can be isolated. The new compounds were identified by analytical and spectroscopic (IR, PMR, MS) methods.  相似文献   

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B-Tris(alkylamino)-N-trialkyl-borazines and B-tris(arylamino)-N-triaryl-borazines may be prepared almost quantitatively by employing the appropriate stoichiometry in the reaction between boron trichloride and an alkyl- or aryl-amine. The borazines so formed react with boron trifluoride or boron trifluoride etherate to give good yields of the B-trifluoro-N-trialkyl- and B-trifluoro-N-triaryl-borazines. Using this methods, (CH3NBF)3, (p-ClC6H4NBF)3 and (C6F5NBF)3 have been prepared. The analogous reaction using (C6F5)3B as a route to B-tris(pentafluorophenyl)borazines was unsuccesful.  相似文献   

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A series of organoaluminum compounds [R2AlOCR′NPh]2, which are the reaction products between trialkylaluminum compounds and secondary acid amides and are excellent catalysts for stereospecific polymerizations of aldehydes, were isolated in the crystalline state. Chemical behavior of such compounds toward Lewis acids and bases were interpreted in terms of the structures of [Me2AlOCPhNPh]2 and its trimethylamine oxide complex Me3NO·AlMe2OCPhNPh which were determined by X-ray structure analyses. Reaction products of primary and tertiary acid amides with trialkylaluminum compounds were also studied.  相似文献   

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The 13C NMR spectra ofthe series of α,α’ -dideuterated ferrocenylcarbenium ions and their precursors, ferrocenylcarbinols as well as other ferrocene derivatives have been measured. The structures of ferrocenylcarbenium ions is discussed.  相似文献   

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The compounds p-XC6H4SO2Cl (X = Cl, Br, I, OMe) react regiospecifically with allyl-, 2-methylallyl-, 3-methylallyl- and 3,3-dimethylallyl-cobaloximes under thermal and photochernical conditions. A rearranged organic product is obtained in each case. The yields are much better in photochemical reactions. A chain mechanism is involved in which the organosulphonyl radical and cobaloxime(II) are the chain propagating species. Yields of the sulphones are drastically reduced when the reactions are carried out in the presence of oxygen.  相似文献   

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Reactions between benzo[h]quinoline (BqH) and M(CO)5Me (M = Mn, Re), M3(CO)12 (M = Ru, Os) and [Rh(CO)2Cl]2 have given the complexes M(CO)4Bq (M = Mn, Re), M(CO)2Bq2 (M = Ru, Os), and Bq2RhCl2Rh(CO)2, respectively; Cr(CO)3 (π-BqH) is metallated on reaction with Mn(CO)5Me, affording [π-BqMn(CO)4]Cr(CO)3. Spectroscopic evidence was obtained for the formation of Mo(CO)2Bq(π-C5H5). Reactions of some complexes to give bi(benzo[h]quinolyl) are also reported. Characteristic changes in the IR and NMR spectra which occur as a result of metallation of the ligand are reported.  相似文献   

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A series of 2,4-dinitrophenyl 4-Y-phenyl disulfides (Y=NO2, Br, F, H, CH3, or CH3O) have been shown to react with trans-IrX(CO)(PPh3)2 (X=Cl, Br, or I) in refluxing benzene to form “oxidative-elimination” products of the type, [IrX(SC6h4Y)(SC6H3(NO2)2)(CO)(PPh3)]2. The physical properties of these complexes are discussed in relation to their structure in the solid state and in solution. In particular, available infrared spectral data indicate that these complexes contain 2,4-dinitrobenzenethiolato bridging groups and that the substituted arenethiolato ligand is trans to carbon monoxide.  相似文献   

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