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1.
Reaction of hexafluoropropene (HFP) with a series of alcohols under thermal, photochemical or peroxide-initiated conditions affords the 1:1 adducts CF3CHFCF2CR1R2OH (R1 = H, R2 = H, Me, Prn or CF3; R1 = Me, R2 = Me or Et) in high yield via a radical chain mechanism. Adduct are not formed with the alcohols (CF3)2CHOH and CF3CHFCF2CH2OH. Other 1:1 adducts of structure CHF2CF(CF3)CH2OH and CH3(C2H3CF2CHFCF3)CH2OH are formed as minor products in the methanol and n-butanol reactions, respectively.  相似文献   

2.
Free radical additions of aldehydes and alcohols to hexafluoro-2-butyne (1), using γ-ray or peroxide initiation, are described. The stereochemistry of addition appears to be determined by the steric requirements of the attacking radical. Telomers are obtained in reactions of (1) with t-butylperoxide but no co-polymers have been produced.  相似文献   

3.
Chlorination and bromination of CH3OCH2CF2CFHCF3 gave contrasting results for the site of halogenation and a rationalisation based on the lateness of the transition-state is advanced. Direct fluorination supports the theory. Chlorination of fluorinated trialkylborates provides a new route for conversion of fluorinated alkenes to fluorinated acid chlorides.  相似文献   

4.
The mono (bistrifluoromethylamino-oxy)alkanes (CF3)2NOCXYZ (X = Y = F, Z = Cl; X = H, Y = F or Cl, Z = CH3; X = Y = F, Z = CH3; X = H, Y = Cl or Br, Z = CF3; X = Cl, Y = Br, Z = CF3) have been synthesised by treatment of appropriate halogenoalkanes, CHXYZ, with bistrifluoromethyl nitroxide. The 1,2-bis(bistrifluoromethylamino-oxy)alkanes (CF3)2NOCH2CXYON(CF3)2 were obtained as by-products in the reactions involving the ethanes CH3CHXY (X = H, Y = F or Cl; X = Y = F); these products, like their analogues (CF3)2NOCHFCF2ON(CF3)2 and (CF3)2NOCH2CCl2ON(CF3)2, were also prepared via attack of bistrifluoromethyl nitroxide on the corresponding ethenes.  相似文献   

5.
Thermolysis of hexafluorocyclopropane in the presence of ethylene, propene, vinyl chloride, and vinyl bromide gives good yields of the corresponding 1,1-difluorocyclopropanes, formed by addition of difluorocarbene to the olefin. The tetrafluoroethylene formed dimerises to octafluorocyclobutane, co-dimerises with the olefin, or survives, depending on the reaction conditions. With allene, hexafluorocyclopropane gives 1-(difluoromethylene)cyclopropane, 2,2,3,3-tetrafluorospiropentane, and products derived from tetrafluoroethylene and allene.  相似文献   

6.
Perfluoro-2-azido-1-azacyclohexene can be prepared by treating perfluoro-1-azacyclohexene with an equimolar proportion of sodium azide (in acetonitrile) or azidotrimethylsilane under mild conditions; 19F n.m.r. analysis reveals that this new imidoyl azide participates in ring ° chain valence tautomerism, the tetrazolo-isomer constituting 19% of the equilibrium mixture at 35 °C.  相似文献   

7.
8.
Pyrrolidine, 3,3,4,4-tetrafluoropyrrolidine, and dimethylamine, react with decafluorocyclohexene to give the non-basic enamines, 1-pyrrolidino-, 1-(3′,3′,4′,4′-tetrafluoropyrrolidino)-, and 1-dimethylamino-nonafluorocyclohex- 1-ene, respectively.  相似文献   

9.
The formation of perfluorotetrahydro-quinoline (3) and -isoquinoline (6) in the high temperature reaction between KF and heptachloro-quinoline and -isoquinoline is investigated and a mechanism is proposed. Compounds (3) and (6) represent unusually substituted pyridine derivatives and the orientation of substitution in reactions with nucleophiles is reported.  相似文献   

10.
11.
The reaction of bifunctional di- and tri- ketone monoximes with (N-phenylimino-vinylidene)-, (oxovinylidene)-, and (thioxovinylidene)-triphenylphosphorane was performed. These phosphacumulene ylides react with the oxime OH group rather than the carbonyl group by addition to give the corresponding phosphoranylidenes. Some of these phosphoranylidenes cyclized according to an intramolecular Wittig reaction to give the oxazines along with triphenylphosphine oxide. On the other hand, the monoximes afforded only the phosphoranylidenes when they were allowed to react with the hexaphenylcarbodiphosphorane. The reaction course between the phosphacumulenes and phosphallene with monoximes was found to depend on the nature of the reactants.  相似文献   

12.
13.
14.
Reaction of 1,2,3,4-tetrahydro-2,4-dioxopyrido[2,3-d]pyrimidine with 3-bromoprop-1-yne gave 1-prop-2′-ynylpyrido[2,3-d]pyrimidine-2,4-dione ( 4a ), 3-prop-2′-ynylpyrido[2,3-d]pyrimidine-2,4-dione ( 4b ), and 1,3-diprop-2′-ynylpyrido[2,3-d]pyrimidine-2,4-dione ( 4c ). Subsequent boiling of 1,3-diprop-2′-ynylpyrido-[2,3-d]pyrimidine-2,4-dione ( 4c ) in formic acid afforded 1-methylimidazo[1,2-a]pyridyl-N-prop-2′-ynylamide ( 5 ) and 1-acetonyl-3-prop-2′-ynylpyrido[2,3-d]pyrimidine-2,4-dione ( 6 ).  相似文献   

15.
Tris(trifluoromethyl)phosphine and ethylene reacted efficiently under u.v. irradiation to give 3,3,3-trifluoropropylbis(trifuomothyl) phosphine in good yield. With vinyl fluoride, vinylidene fluoride, and propene the reaction was regioselective rather than regiospecific, and the yield of 1:1 adduct was low. In these reactions, and in those with vinyl chloride, but-1-ene, and hexafluoropropene, in which only traces of 1:1-adduct could be detected, the bulk of the olefin and of the phosphine was recovered, and numerous by-products consistent with radical intermediates were identified. With propyne, 1,1,1-trifluoro-3-bis(trifluoromethyl)phosphino-cis-but-2-ene was obtained in moderate yield, but no reaction occurred between the phosphine and either but-2-yne or hexafluorcbut-2-yne. Tris(trifluoromethyl)phosphine oxide did not form an adduct with ethylene, tetrafluoroethylene, or propyne.Bis(trifluoromethyl)phosphine and dimethylphosphine both reacted readily under u.v. irradiation with 3,3,3-trifluoropropene, the phosphinyl radical attacking the terminal carbon in each case.  相似文献   

16.
Infrared, Raman and solid state13C NMR spectra have been recorded for arange of inclusion compounds of urea containingstraight chain aliphatic carboxylic acids(butyric – decanoic) as guests. Inclusioncompounds are not formed with formic, acetic andpropionic acids. Thiourea does not forminclusion compounds with any of the C1 to C10acids. The vibrational and NMR data support theconclusion that the acids are present ashydrogen bonded dimers in the channels of thehost. The alkyl chain 13C chemical shiftvalues are very different from those of acidguests in the cavities formed in Dianin'scompound. These suggest that the alkyl chainsare present in the all-trans conformation,although weak bands observed in the spectrum ofthe decanoic acid inclusion compound lend somesupport to suggestions based on MM calculationsthat other conformations might be present.  相似文献   

17.
Reactions with alcohols and base replaced the vinylic fluorine of 1-trifluoromethylnonafluorocyclohex-1-ene(I) by methoxy and ethoxy groups. Fluorination with cobaltic fluoride gave, from the former, a number of saturated polyfluoro-ethers. Oxidation of the alkoxy-cycloalkenes gave hexafluoroglutaric acid. Cycloalkene I gave which ammonia an imino-enamine, which was hydrolysed by dilute acid to a keto-enamine. I was defluorinated by heated iron to octafluorotoluene.  相似文献   

18.
4-Azido-2,5,6-trifluoro- and 4,6-diazido-2,5-difluoro- pyrimidine were obtained by treating tetrafluoropyrimidine with sodium azide in acetonitrile; similar azidation of 5-chlorotrifluoropyrimidine gave 4-azido-5-chloro-2,6-difluoro- and 4,6-diazido-5-chloro-2-fluoro-pyrimidine. Each monoazide reacted with triphenylphosphine to yield the corresponding iminophosphorane (Staudinger reaction), and the trifluoro- compound gave cycloadducts when heated with phenylacetylene [→ 4-phenyl-1-(2,5,6-trifluoro-4-pyrimidinyl)-1,2,3- triazole] and acrylonitrile [→ 2-cyano-1-(2,5,6-trifluoro- 4-pyrimidinyl)aziridine]; attack on the trifluoro-azide by the sodium salt of pentafluoroaniline produced 4-azido-2,5- difluoro-6-(pentafluorophenylamino)pyrimidine and bis(4- azido-2,5-difluoro-6-pyrimidinyl)(pentafluorophenyl)amine. Attempts to intercept nitrenes during thermal decomposition of both mono-azides failed. Thermolysis of 4-azido-3-chloro- 2,5,6-trifluoropyridine in the presence of dimethyl sulphoxide, cyclohexane, or pentafluoroaniline gave products [pyFNS(O)Me2, pyFNHC6H11, and pyFNNPhF (PYF = 3-chlorotrifluoro-4-pyridyl), respectively] compatible with release of the corresponding nitrene.  相似文献   

19.
Thermolysis of perfluoroazidobenzene, perfluoro-4- azidotoluene, perfluoro-4-azidopyridine, 4-azido-3- chlorotrifluoropyridine, and 4-azido-3, 5-dichlorodifluoropyridine (ArFN3) in the presence of a large excess (ca. 10 molar) of 1,3,5-trimethyl- or 1,3,5-trimethoxy-benzene (ArH) gave the diarylamines expected from nitrene ‘insertions’ at nuclear CH bonds (ArFN3 + ArH→ArFNHAr + N2); product yields in the cases of the perfluorinated azides are the highest ever recorded for this type of reaction. By contrast, no recognisable products were obtained when either perfluoro-(2-azido-4-isopropylpyridine) or 2-azido- 4-chlorotrifluoropyridine were decomposed thermally in 1,3,5-trimethylbenzene.  相似文献   

20.
Caesium fluoride combined with perfluoro-1-azacyclohexene in acetonitrile to yield perfluoro-1-azacyclohex-1-ylcaesium (1), which was characterised by 19F n.m.r. spectroscopy and by treatment with iodomethane to give 2,2,3,3,4,4,5,5,6,6-decafluoro-1-methyl-1-azacyclohexane (2). Attempts to derivatize the caesium salt with chlorotrimethylsilane provided fluorotrimethylsilane, perfluoro-[1-(1-azacyclohex-1-en-2-yl)-1-azacyclohexane] (4), and 2-chloro-3,3,4,4,5,5,6,6-octafluoro-1-azacyclohexene (5); information on the course of this reaction was obtained through experiments in which perfluoro-1-azacyclohexene was shown to undergo conversion into its chloro-analogue (5) and its dimer (4) via treatment with chlorotrimethylsilane and fluoride ion, respectively. Aluminium chloride also converts perfluoro-1-azacyclohexene into its chloro-analogue (5).  相似文献   

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