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1.
2.
The known complex, trans-(η-C5H5)2Rh2(CO)2(CF3C2CF3) is formed in high yield from (η-C5H5)Rh(CO)2 and CF3FCCF3 at 100°. The less stable cis-isomer of the complex is obtained in low yield from the same reaction. The infrared, 1H, 19F and 13C NMR spectra of the two isomers are compared. The trans-isomer undergoes CO scrambling in solution at room temperature, and the variable temperature 13C NMR spectra are consistent with a pairwise bridge opening and closing mechanism. The mechanism is extended to account for the isomerization of cis to trans isomer, whihc has a half-life of 12 h at room temperature. The 13C spectrum indicates that the cis-isomer is static in solution at room temperature. The trans-isomer is reversibly protonated by protonic acids, and BF4? and PF6? salts of the protonated species can be isolated. The spectroscopic properties of these salts are consistent with protonation at one of the alkynyl-carbons, but it is not possible to distinguish between two alternative structures for the complex cation.Treatment of (η-C5H5)2Rh2(CO)2(CF3C2CF3) with (η-C5H5)Rh(CO)2 gives the trinuclear complex (η-C5H5)3Rh3(CO)(CF3C2CF3) in 80% yield. The analogoug but-2-yne complex is formed from (η-C5H5)3Rh3(CO)3 and MeCCMe. The infrared, 1H, 19F and 13C NMR spectra indicate that the hexafluorobut-2-yne complex exists in two different structural arrangements in solution. One has an edge bridging, and the other a face bridging carbonyl. The proportion of the isomers is affected by the solvent polarity. The spectra of the but-2-yne complex indicate it is fluxional at room temperature, and has a face bridging structure in solution regardless of the polarity of the solvent. Reversible protonation of the hexafluorobut-2-yne complex occurs in protonic acids, and the salt [(η-C5H5)3Rh3(CO)(CF3C2CF3)H]+[BF4]?,H2O can be isolated. The spectroscopic properties of this complex are consistent with a structure incorporating an edge-bridging carbonyl, and probably, an edge-bridging hydride ligand.  相似文献   

3.
The nitrosoarenes ArNO (Ar = C6H5, 2-MeC6H4, 2,4,6- Me3C6H2 and C6F5) have been condensed with 4-(dichloroamino)- tetrafluoropyridine to provide the azoxy-compounds pyFNN+(N-)Ar (pyF = 2,3,5,6-tetrafluoro-4-pyridyl); de-oxygenation of the first three with triphenylphosphine or triethyl phosphite gave the corresponding azo-compounds, and the reverse reaction was achieved in the case of pyFNNC6H2Me3-2,4,6 using peroxytrifluoroacetic acid. Thermolysis of 4-azidotetrafluoropyridine in the presence of pentafluoronitrosobenzene provided the perfluorinated azoxy-compound pyFNN+(O-)C6F5. X-Ray methods have been used to determine the molecular geometry of pyFNN+(O-)C6H2Me3-2,4,6.  相似文献   

4.
Methods of substituting pyridine by perhalogenomethylmercapto groups are discussed. The side chain chlorination of 2-(methylmercapto)pyridine leads gradually to 2-(trichloromethylmercapto)pyridine hydrochloride (1a) and 2-(trichloromethylmercapto)pyridine (1b). Neither a direct reaction of pyridine with CF3SCl nor the way over a Grignard reaction or a sulfenylcarboxylate lead to CF3S-substituted products. Reactions of pyridine and bromopyridines with Hg(SCF3)2 yield 1:1-adducts (2a-d) only. Lithium tetrakis(1,2-dihydro-1-pyridyl)aluminate (LDPA) reacts with CF3SCl to give 3-(trifluoromethylmercapto)pyridine (3); in addition a disubstituted product can be identified massspectroscopically. 1H- and 19F-NMR-spectra are reported.  相似文献   

5.
2,2-Bis(trifluoromethyl)-3,4-difluoro-oxetan, when treated with aluminium trichloride at 30 to 90 °C, undergoes cis to trans isomerisation, non-stereospecific exchange of the 4-fluorine by chlorine, and more slowly of the 3-fluorine, and ring opening to give preferentially the alcohols (CF3)2C(OH)CXCHCl (X  F or Cl), together with the aldehydes (CF3)2CClCHXCHO and acid chlorides (CF3)2CClCHXCClO (X  F or Cl). A large number of unidentified minor products were also obtained from the reactions carried out at the higher temperatures.  相似文献   

6.
The concentration and temperature dependence of J(199HgC19F) for solutions of CF3HgX (X = Cl, I, OCOCF3) in various solvents shows that in inert solvents these molecules exist mainly as non-solvent dimers (X = I or OCOCF3) or as monomers (X = Cl). In strongly coordinated solvents 12 complexes are largely formed from CF3HgX and the electron-donating solvent molecules. In pyridine solution an equilibrium exists between the 11 and 12 complexes. Complexes of the type CF3HgX·D are T-shaped and have a higher relative content of s-electrons in the HgCF group compared with tetrahedral CF3HgX·2D complexes.  相似文献   

7.
The phosphite complexes cis-[PtMe2L(SMe2)] in which L = P(OiPr)3, 1a, or L = P(OPh)3, 1b, were synthesized by the reaction of cis,cis-[Me2Pt(μ-SMe2)2PtMe2] with 2 equiv. of L. If 4 equiv. of L was used the bis-phosphite complexes cis-[PtMe2L2] in which L = P(OiPr)3, 2a, or L = P(OPh)3, 2b, were obtained. The reaction of cis-[Pt(p-MeC6H4)2(SMe2)2] with 2 equiv. of L gave the aryl bis-phosphite complexes cis-[Pt(p-MeC6H4)2L2] in which L = P(OiPr)3, 2a′, or L = P(OPh)3, 2b′. Use of 1 equiv. of L in the latter reaction gave the bis-phosphite complex along with the starting complex in a 1:1 ratio.The complexes failed to react with MeI. The reaction of cis,cis-[Me2Pt(μ-SMe2)2PtMe2] with 2 equiv. of the phosphine PPh3 gave cis-[PtMe2(PPh3)2] and cis-[PtMe2(PPh3)(SMe2)] along with unreacted starting material. Reaction of cis-[PtMe2L(SMe2)], 1a and 1b with the bidentate phosphine ligand bis(diphenylphosphino)methane, dppm = Ph2PCH2PPh2, gave [PtMe2(dppm)], 8, along with cis-[PtMe2L2], 2. The reaction of cis-[PtMe2L(SMe2)] with 1/2 equiv. of the bidentate N-donor ligand NN = 4,4′-bipyridine yielded the binuclear complexes [PtMe2L(μ-NN)PtMe2L] in which L = P(OiPr)3, 3a, or L = P(OPh)3, 3b.The complexes were fully characterized using multinuclear NMR (1H, 13C, 31P, and 195Pt) spectroscopy.  相似文献   

8.
The two perfluoro-azadienes CF2N.CRCF2 (R = CF3 or CF2Cl) show temperature dependent 19F n.m.r. spectra, with non-equivalent fluorine nuclei of the CF2N portion at low temperatures, which coalesce due to inversion at the nitrogen at higher temperatures (ΔG3 = 60 kJ mol?1). N.m.r. parameters have been obtained. One of the five-bond FF coupling constants is much larger (ca. 24 Hz) than the remainder (0·5–5·5 Hz), possibly due to ‘through-space’ coupling of fluorines in the cis-skew conformation.  相似文献   

9.
Treatment of 1-methoxynaphthalene (MXNH) with n-butyllithium in a diethyl ether/n-hexane solution gives 1-methoxynaphthalene-8-lithium (MXNLi) in 30% yield as an insoluble material. This compound reacts with PdCl2(SEt2)2 to give bis(1-methoxynaphthalene-8-C,O)palladium(II) (I)_and with PtCl2(SEt2)2 to give cis- and trans-(1-methoxynaphthalene-8-C,O)(1-methoxynaphthalene-8-C)(diethylsulfide)platinum(II) (II), which are non-rigid molecules in solution. With the cyclopalladated dimers [{Pd(CN)Cl2}2], MXNLi gives the palladobicyclic compounds: (N∩C)Pd(C∩O) (III). An X-ray diffraction study of compound IIIa where N∩N = 8-methylquinoline-C,N reveals the planarity of the molecule, shows that it has a cis configuration with respect to the PdC bonds, and confirms that the oxygen atom of MXN is bonded to palladium: PdO 2.236(4) Å. The geometry of IIIa is maintained in solution, whereas the corresponding compounds IIIb and IIIc in which N∩C is benzo[h]quinoline-9-C,N and N,N-dimethyl-1-naphthylamine-8-C,N, respectively, appear to be mixtures of cis and trans isomers in solution. With PMe2Ph I and II give trans-Pd(MXN)2(PMe2Ph)2 and cis-Pt(MNX)2(PMe2Ph)2, respectively, in which the methoxynaphthalene is bound to the metals via the 8-carbon of the naphthalene ring. Only one phosphine ligand adds to compounds IIIb and IIIc with displacement of the O → Pd bond. One carbon monoxide ligand can be added to the platinum compound II to give Pt(MXN)2(SEt2)CO which in solution exists as two isomers in equilibrium.  相似文献   

10.
The thermal dissociation of the [Co(NH3)6]X3 (X = Cl?, Br?, I?, and NO?3), [Co(en)3]X3 (X = Cl?, Br?, I?, NO?3, HSO?4 and 12 C2O2?4), cis- [Co(en)2Cl2]Cl, and trans-[Co(en)2ClBr]NO3 complexes was investigated by an electrical conductivity (EC) technique. During the thermal dissociation reactions, liquid or semi-liquid phases are formed which cause large increases in the EC of the compound. The effect of concentration of the complex in a matrix medium as well as the composition of the matrix material on the EC curves were also determined.  相似文献   

11.
A series of gold(III) cations of the type cis-[CH3)2AuL2]+ X? where L  Ph3, PMePh2, PMe2Ph, PMe3, AsPh3, AsPh3, SbPh3, 12H2NCH2CH2NH2, 12 Ph2PCH2CH2-PPh2, 12 Ph2AsCH2CH2AsPh2, and 12o-C6H4(AsMe2)2 and X  BF4?, PF6?, ClO4?, and F3CSO3? has been prepared. In addition, the cis complexes [(CH3)(CD3)-Au(PPh3)2]F3CSO3, [(C2H5)2Au(PPh3)2]F3CSO and [(n-C4H9)2Au(PPh3)2]F3-CSO3 have been synthesized. All have been characterized by PMR, Raman and infrared spectroscopy. These [R2AuL2]X compounds yield only ethane, butane, or octane via reductive elimination, and no disproportionation is observed. The alkane eliminations have been studied in CHCl3, CH3Cl2, and CH3COCH3 solution as a function of temperature, concentration of the complex, and concentration of added ligand L. Elimination is fastest when L is bulky (PPh3 > PMePh2 > PMe2Ph > PMe3), decreases in the sequence SbPh3 > AsPh3 > PPh3, is slow with chelating ligands, is inhibited by excess ligand, and there is small anion effect as X is varied. As R is varied, the rate of elimination decreases Bu ? Et > Me. An intramolecular dissociative mechanism is proposed which involves rapid elimination of alkane from an electron deficient dialkylgold(III) complex with nonequivalent gold—carbon bonds and produces the corresponding [AuL2]X complex.  相似文献   

12.
cis- and trans - 2,3 - Dimethylenemethylenecyclopropane (C and T) interconvert at 160.0° with a small normal kinetic isotope effect (KIE) when the exo-methylene is deuterated, but the 1,3-shift products, 2-methylethylidenecyclopropane, show a large normal KIE, 1.35 and 1.31, when formed from C and T, respectively. This data can be interpreted in terms of either parallel reactions or a common trimethylenemethane diradical intermediate formed with a normal KIE of 1.11 and closing to 1,3-shift product with a normal KIE of 1.29 due to the effect of deuterium in the required 90° rotation of the exo-methylene carbon.The kinetics of the thermal 1,3- and 3,3-shifts of cis- and rans-3,4-dimethyl-1,2-dimethylenecyclobutane (CB and TB) were determined in a flow reactor. The first order rate constants are log kCB (sec?1) = 13.7 ? 42,200/2.3 RT and log kTB (sec?1) = 13.6 ? 41,900/2.3 RT (Ea in kcal/m) which compare favorably to that from the parent hydrocarbon. 1,2-dimethylenecyclobutane, after reasonable correction for dimethyl substitution.Rearrangement of TB and its bis(dideuteriomethylene) derivative at 230.0° revealed a normal KIE of 1.08. This KIE could be interpreted in terms of either a methylene rotational isotope effect in a concerted reaction or formation of a bisallyl diradical with the expected normal rotational IE on closure to the 1,3-shift product of 1.12 with no IE in the ring opening when the result is corrected for return of the biradical to starting material.The kinetics of intramolecular 2 + 2 cycloaddition of 1,2,8,9-decatetraene were determined in a flow reactor. The first order rate constant is log k(sec?1) = 9.4 ? 30,800/2.3 RT (Ea in kcal/m). These energetics are compared with those of other 2 + 2 cycloadditions. The major product is 3,4-dimethylenecyclooctene (DC) which is also found from the minor product, cis-7,8-dimethylenebicvyclo[4.2.0]octane (CO), at higher temperatures. The trans isomer, TO, also gives DC at about the same rate as CO.  相似文献   

13.
F-N-Isopropylacetimidoyl chloride, CF3CClNCF(CF3)2, has been used as a precursor for a variety of heterocyclic and acyclic compounds. Reaction with azide ion yields a mixture of the imidoyl azide, CF3(N3)CNCF(CF3)2, and the 1,5-tetrazole, CF3CNNNCF(CF3)2. Hexafluoropropylideniminolithium produces as a minor product the conjugated diimine, (CF3)2CNC(CF3)NCF(CF3)2, from nucleophilic attack at the imidoyl chlorine and as a major product the triimine, (CF3)2CNC(CF3)NC(CF3)2NC(CF3)2, from further attack at the isopropyl fluorine. A thio-amide, CF3C(S)NHCH(CF3)2, and a Δ3-1,2,4-dithiazoline, SSC(CF3)NC(CF3)2, are produced upon reaction of hyrogen sulfide with the imidoyl chloride. Pathways are proposed for each of the reactions.  相似文献   

14.
A mixture of RSCHCl2, Ph3P and trans-caronaldehyde ethyl ester, treated with aq.NaOH under phase transfer conditions, gave the corresponding 2-alkylthio,2-chloroethenyl derivative, the product of the Wittig reaction of a phosphorane formed 'in situ'. The analogous derivative of the cis- and the 2-methylthio, 2-bromoethenyl derivative of the trans-caronaldehyde ethyl ester were synthesized also by means of Wittig-Horner reactions. The 2-trifluoromethylthio, 2-chloro-ethenyl derivative of the caronaldehyde ethyl ester (cis-trans mixture) was also obtained through the phosphonate prepared from CF3Cl + N2CHP(OET)2→ CF3SCHClP(O)(OEt) The new derivatives prepared were converted to final pyrethroids by esterification with cyano(m-phenoxyphenyl)methanol.  相似文献   

15.
At low temperatures, the 19F n.m.r. spectrum of the tetrazan (CF3)2NN(CF3)N(CF3)N(CF3)2 shows the presence of two isomers with a free energy difference in stability ΔG of 2.2 kJ mol-1. Both isomers show three types of CF3 group which coalesce at -15°C to three systems of equal intensity (ΔG≠ 52 kJ mol-1). At 40 °C the two signals assigned to the terminal CF3 groups coalesce to a single band (ΔG≠ 65 kJ mol-1).The behaviour is discussed in terms of restricted inversion at the nitrogen atoms, and hindered rotation about the N-N bonds.The hydrazines (CF3)2NN(CF3)NO and (CF3)2NN(CF3)NO2 have temperature independent spectra.  相似文献   

16.
Ionic trifluoromethanesulphonates (triflates) are strongly solvated with their conjugate acid in dichloromethane (Ph3C+, n-Bu4N+, Ag+) and acetonitrile (Na+, Ag+). A 1H and 19F NMR study of the chemical shifts of various acid-salt mixtures show that in CH2Cl2 three homoconjugates A? · HA, A?. (HA)2 and A?(HA)3 were formed with large formation constants whereas in acctonitrile only the 1:1 homoconjugate was formed with an equilibrium constant K1 ~ 4 1 · M?1. This result explains why the protonation by CF3SO3H of non-polymerizable olefins such as 1,1-diphenylethylene and 3-phenylindene is always incomplete (13 and 12 respectively) in CH2Cl2. Conditions in which covalent triflates could be obtained have been investigated. As a consequence of homoconjugation, reaction of Ph3COH with triflic anhydride led to Ph3C+ CF3SO?3 HOSO2CF3. Other tertiary alcohols were dehydrated by triflic anhydride and led to ethylenic compounds (1,1-diphenylethanol) or ethers (2-phenyl 2-propanol). Esters were only observed in the case of benzyltriflate (at ?20°) and in the case of 1-phenylethyltriflate which is a model of polystyryltriflate (stable at room temperature).  相似文献   

17.
Reaction of the amines (CF3)2NX (X=Cl,Br) with norbornadiene either in solvent (CH2Cl2) at ?78 °C in the dark or in the vapour phase at 20 °C in daylight gives a mixture of 3-halogeno-5-(NN-bistrifluoromethylamino)nortricyclene (exo, endo-and exo, exo-isomers) and exo-5-(NN-bistrifluoromethylamino)- anti-7-halogenonorbornene in quantitative yield formed via halonium ion addition to the diene. The reaction of the amine (CF3)2NBr in solvent Me2O or Et2O at ?78 °C in the dark gives the same products in low yield, together with 3-bromo-5-alkoxynortricyclene (exo, endo- and exo, exo-isomers) and the amine (CF3)2NR (R=Me, Et) in high yield.  相似文献   

18.
Micellar n-C16H33N+(CH3)2CH2S+(CH3)2, 2CF3SO3? rapidly methylates bound thiophenoxide ions.  相似文献   

19.
Microcalorimetric measurements at elevated temperatures of the heats of thermal decomposition and of iodination of a number of [M(CO)nL6-n] complexes (M = Cr, Mo, W; n = 3, 4; L = py, MeCN) have led to values for the standard enthalpies of formation of the following crystalline compounds (values given in kJ mol?) at 25°C: fac-[Mo(CO)3py3](275 ± 12), fac-[Mo(CO)3(NCCH3)3]  (410 ± 12), fac-[W(CO)3py3](250 ± 12), fac-[W(CO)3(NCCH3)3](405 ± 12) and cis-[Cr(CO)4py2](505 ± 20). From these and other data, including estimated heats of sublimation, the bond enthalpy contributions of the various metalligand bonds in the gaseous metal complexes were evaluated as follows (values in kJ mol?): D(Crpy) 102, D(Mopy) 146, DWPy) 173, D(Mo7z.sbnd;NCMe) 135 and D(WNCMe) 169. For a given metal the bond enthalpy contribution decreased in the order D(MCO) > D(Mpy) > D(Mz.sbnd;NCMe). This order is related to the σ- and π-bonding character of the ligand.  相似文献   

20.
The 29Si, 13C and 1H NMR spectra of 11 mixtures of Me3SiI and Me3SiOSO2CF3 with DMF in CD2Cl2 show signals that are consistent with the formation of Me3SiOC+H(NMe2)X? but not with penta- or hexa-coordinate silicon species. The spectra of a 11 mixture of Me3SiBr and DMF show a rapidly exchanging, equilibrium mixture of Me3SiOC+H(NMe2)Br? and starting materials. No strong evidence for salt formation between DMF and Me3SiCl was obtained. The spectra of Me3SiX (X = I, Br, Cl, OSO2CF3) in CD3CN indicate that neither adduct formation nor extra coordination at silicon is significant.  相似文献   

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