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1.
The Raman, and infra-red spectra of Na+, K+, Rb+, Cs+, NH4+, C5H5NH+ and n-Bu4N+ salts of the TeF5- ion are reported. They are assigned Cs symmetry. 19F n.m.r. spectra of the n-Bu4N+ salt show J(Fax-Feq)50.4Hz, J(19Feq-125Te)1375.7Hz, J(19Fax-125Te)2883.3Hz and J(19Feq-123Te)1143.8Hz. No n.m.r. evidence was found for TeF62-.  相似文献   

2.
In the reaction of C5H5Co(CO)(C3F7)I with isonitriles in the molár ratio 11 the brown complexes C5H5Co(CNR)(C3F7)I are formed. The fluorine atoms of the α-CF2 groups are diastereotopic because of the asymmetric center at the Co atom. With (—)-α-phenylethylisonitrile a pair of diastereoisomers is obtained which could not be separated.C5H5Co(CO)(C3F7)I and C5H5Co(CNR)(C3F7)I react with excess isonitrile with the formation of benzene soluble, yellow salts [C5H5Co(CNR)2(C3F7)]+I?, which can be transformed into the corresponding PF?6 salts. The new compounds were characterised by C, H, N, Co analyses, molecular weight determinations, IR, 1H NMR, 19F NMR, 13C NMR, ESCA and mass spectra.  相似文献   

3.
A novel C19-diterpenoid alkaloid designated as tatsinine has been isolated from the roots of Delphiniumtataienence and its structure (3) has been derived from 1H NMR and 13C NMR spectroscopic evidence.  相似文献   

4.
Reactions of nC7F15Br with elemental fluorine at 0°C have produced perfluoro-n-heptylbromine(V) tetrafluoride (n-C7F15BrF4). This derivative of BrF5 was characterized by IR, 19FNMR, mass spectroscopy and elemental analysis. The reactions of nC7F15BrF4 with 1,2-dichlorohexafluorocyclopentene-1 (C5F6Cl2) and 1,2-dichlorooctafluorocyclohexene-1 (C6F8Cl2) were used to demonstrate in the fluorinating ability of nC7F15BrF4.  相似文献   

5.
When (t-Bu)2PCH2CHCH2CH2 is combined with [IrCl(C8H14)2]2 in toluene, the σ-bound cyclopropane complexes
(P(t-Bu)2CH2CHCH2CH2) (1a, 1b) are formed. Complexes 1a,1b react readily with H2 to form IrClH2P(t-Bu)2CH2CHCH2CH2)2 (2). In polar solvents 1a,1b isomerize to the σ-vinyl chelated complex IrClH(P(t-Bu)2CH2C(CH3)CH)(P(t-Bu)2CH2CHCH2CH2) (3). The structure of this 5-coordinate, 16-electron IrIII complex was deduced from spectroscopic data, reaction chemistry, and from the crystal structure of its CO adduct (4). Compound 4 crystallizes in the monoclinic space group C2h5-P21/n (a 15.610(14), b 15.763(16), c 11.973(13) Å, and β 104.74(5)°) with 4 molecules per unit cell. The final agreement indices for 2326 reflections having Fo2 > 3σ(Fo2) are R(F) = 0.089 and Rw(F) = 0.095 (271 variables) while R(F2) is 0.148 for the 3423 unique data. Bond lengths in the 5-atom chelate ring IrPCCC are IrP 2.341(4), PC 1.857(26), CC 1.520(30), CC 1.341(25), and CIr 1.994(21) Å. The IrCl distance is 2.479(5) Å.  相似文献   

6.
The conformational behaviour of the methylenemalonaldehyde fragment of the title compounds is characterized by solvent and temperture dependencies of 1J(CHO), 3J(CHO,CHO), 3J(CHO,CH), 4J(CHO,CHO) and 4J(CHO,CH) spin-spin couplings as well some abinitio (STO-3G) and semiempirical level Molecular orbital calculations. The conformational behaviour of the couplings is also discussed on the basis of some INDO/FPT calculations. The conformations of the two formyls are strongly correlated, the trans-cis arrangements being favored. The conformation of the Z-formyl is determined by the steric interaction with the aromatic nucleus. The conformations of the formyls are sensitive to solvent and substitution on the aryl. Approximate populations and couplings of the sites are derived. There is some evidence about the non-planarity of the methylenmalonaldehyde fragnent. Complex formation with Mg(C104)2 is reported.  相似文献   

7.
The fluoride ion induced isomerisation of 1-perfluoroalkenes RFCFCF2 (RF=C4F9, (I) -C5F11 (II), -C6F13 (III), -C7F15(IV) has been studied in the polar solvents DMF and VMSO. The reaction gives a mixture which changes to the thermodynamically stable isomer. 19F n.m.r. spectroscopy allows characterisation of products and shows that all alkenes formed are cis-derivatives. The products formed are explained on the basis of a cyclic intermediate involving participation of the metal cation.  相似文献   

8.
The 6-phenyl-dihydro-α-pyrone moiety of psilotin is formed from [2′,3′-13C2,1′-14C,-4-3H]phenylalanine in the plant Psilotumnudum with retention of all the isotopes.  相似文献   

9.
In boiling benzene, 1-phenyl-3,4-dimethylphosphole (L) with [(C5H5)Fe(CO)2]2 gives mainly a classical σ-complex in which L relaces one terminal CO. In boiling xylene, however, L also gives 3,4-dimethylphosphaferrocene and 2-phenyl-3,4-dimethylphosphaferrocene resulting from a P—Ph bond cleavage followed by a C-phenylation of the phospholyl nucleus in the second case. The same reaction with 1-phenylphosphole yields phosphaferrocene itself and a mixture of 2- and 3-phenylphosphaferrocene. The phosphaferrocenes thus prepared are exclusively acetylated at the phospholyl nucleus by the CH3CGClAlCl3 complex in CH2Cl2.With the unsubstituted phosphaferrocene, the acetylation takes place at the 2 and 3 positions (ratio 238515) 1H, 13C, 13P NMR and mass spectral data are given. The phosphaferrocene system is characterized by a very large 1J(P—C) coupling (~60 Hz) and a very shielded phosphorus atom.  相似文献   

10.
The PMR and 19F NMR spectra of the complexes R2TlBr (R = C6F5, o-HC6F4, m-HC6F4, 3,5-H2C6F3, or 3,6-H2C6F3 and R3Tl(diox) (R = C6F5, m-HC6F4, or 3,5-H2C6F3; diox = 1,4-dioxan) have been recorded. Proton and fluorine chemical shifts, thallium-proton, thallium-fluorine, fluorine-fluorine, and fluorine-proton coupling constants, and thallium substituent chemical shifts are given and discussed  相似文献   

11.
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   

12.
Copper(I) pentafluorothiophenolate, CuSC6F5 reacted with a number of acyl and alkyl halides in either n-hexane or DMF. The products RCH2SC6F5 (R = Me, Ph, C6F5S, C6F5SCH2), Ph2CHSC6F5, R3CSC6F5(R =Me, Ph) and RCOSC6F5 (R = Me, C6F5) have been characterized and their spectra, particularly NMR spectra (H1, C13, F19) have been examined.  相似文献   

13.
The nucleophilic substitution reactions of some simple fluorobenzenes, C6H6?xFx with sodium methanethiolates Na+SR?(R=Et, i-Pr, t-Bu) have been studied. Some fully substituted products, C6H6?x(SR)x, could be obtained in DMF as solvent with R = Et and i-Pr, but not when R = t-Bu. All the new products isolated have been characterized by elemental analysis, and NMR (H-1 and F-19), infrared and mass spectroscopy.  相似文献   

14.
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   

15.
19F NMR spectra of 1,2- dimethoxyethane solutions of Na- and Li- salts of polyfluorinated carbanions [p - RC6F4C(CN)C6F4R′-p] Na+ (Li+) and of their neutral precursors p-RC6F4CH(CN)C6F4R′-p / R  F or CF3 and R′= CF3, CF2CF3, CF(CF3)2 and C(CF3)3/ have been studied. The values of changes in the chemical shifts of fluorine atoms in the ring and the side chain are practically the same when going from the precursor to carbanion with the perfluoroalkyl group being varied. This gave grounds to conclude that the electronic effect of the perfluoroalkyl groups is rather similar. The 19F NMR method has revealed no differences in the predominant mechanism of the negative charge distribution by these groups.  相似文献   

16.
The sodium salt (CF3)2 NONa+ (I) [from (CF3)2NOH + NaH in Et2O], is an alternative bis(trifluoromethyl)amino-oxylating agent to the adduct (CF3)2NOH.CsF (III). With pentafluoropyridine it affords 4-X.C5F4N (II) + 2,4-X2.C5F3N (IV), [X = (CF3)2NO]. It has been used to obtain a number of new bis(trifluoromethyl)amino-oxy-compounds; i.e. the following conversions have been effected: perfluoro-(4-isopropylpyridine)→ 2-X.C5F3N.CF(CF3)2-4 (V) + 2,6-X2.C5F2N.CF(CF3)2-4 (VI); 3-chlorotetrafluoropyridine → 4-X.C5F3N.Cl-3 (VII) and 2-X.C5F3N.Cl-5 (VIII) (not separated) + 2,4-X2.C5F2N.Cl-5 (IX), 3,5-dichlorotrifluoropyridine → 2- (XI) and 4-X.C5F2N.Cl2-3,5 (X) (not separated) + 2,4-X2.C5FN.Cl2-3,5 (XII); and perfluorotoluene → 4-X.C6F4.CF3-1 (XIII). Hexafluorobenzene resisted attack by (CF3)2NONa under the conditions used with these aromatic substrates (ca 20 °C). Static pyrolysis (125 °C) of 4-[bis(trifluoromethyl)amino-oxy]tetrafluoropyridine (II) gave a mixture of 6-bis(trifluoromethyl)amino]tetrafluoro-4-azacyclohexa-2, 4-dienone (XV) and 4-[bis(trifluoromethyl)amino]tetrafluoro-4-azacyclohexa-2,5-dienone (XVI). The 13C chemical shifts, assigned by analysis of 19F-coupled and 19F broad-band decoupled 13C n.m.r. spectra, are in accord with a +M effect similar to that of fluorine for a (CF3)2NO- substituent in the 2- and 4- positions of a polyfluoropyridine and a slightly smaller -I effect; the steric effect of (CF3)2NO on the shifts is less than that of chlorine. In contrast, a ring carbon carrying a (CF3)2CF- substituent is markedly shielded compared with one carrying fluorine, presumably by a steric effect.  相似文献   

17.
《Polyhedron》2003,22(25-26):3389-3393
Cu(I) complexes with 1,3-bis(diphenylphosphino)propane (dppp), 1,2-bis(diphenylphosphino)benzene (dppB) and perfluorinated carboxylates of the general formula [Cu(diphosphine)2](RCOO), R=C2F5, C4F9, C6F13, C8F17, C9F19, have been prepared and characterized with MS, IR and 1H, 31P, 13C, 19F, 63Cu NMR spectroscopy. The presence of distinct bis-chelated cations of [Cu(diphosphine)2]+ type and uncoordinated carboxylate anions has been proposed.  相似文献   

18.
Condensation of 2,5,5-trimethylhexa-2,3-dien-6-a1 with malononitrile affords an unexpected product, C15H16N4X, (3), the structure of which was partially characterized by spectral (infrared, ultraviolet, 1H, and 13C nmr) methods and fully elucidated by single crystal X-ray analysis. 3 is l-cyano-2-amino-3-(2-propenyl)-5,5-dimethy-6- dicyanomethycycohexa-l,3-diene in a half-chair conformation. Conjugation of the cis-aminocyanoethenyl moiety leads to intermolecular
hydrogen bonding in the crystal. A reaction sequence and its mechanistic implications are proposed.  相似文献   

19.
The series of compounds (FC6H4O)nWF6-n, where n = 1-6 and F is meta or para to oxygen, has been prepared and all fluorine nmr chemical shifts determined. The W-F, para-F, and meta-F resonances all shift upfield as a function of n with approximate relative sensitivities of 1, 1/20, and 1/30, respectively. All chemical shifts are also found to be sensitive to molecular stereochemistry, with subtituents trans to oxygen shifted to higher field than those trans to fluorine. 19F data is also reported for the complete series (C6H5O)nWF6-n  相似文献   

20.
In the 1H NMR spectrum of the complex [Os3H3(CO)9CC(CH2CH2]+ at 30°C, under conditions of rapid exchange, the single hydride resonance has two sets of satellites of equal intensity (separated by 32.0 and 28.8 Hz) caused by 187Os1H spin—spin coupling. The spectral data rule out the upright carbenium ion structure for the complex, and are consistent with the fluxional process involving hydrocarbon ligand rotation about the CC(CH2)2CH2 axis in a tilted structure, with concomitant rotation of the Os3H3(CO)9 moiety.  相似文献   

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