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1.
1.  The reaction of 3,3-disubstituted cyclopropene hydrocarbons with norbornadiene in the presence of 1–3 mole % CuCl or (PhO)3P·CuCl at 0–40C takes place according to the scheme of both [2 + 2]- and [1 + 2]- cycloaddition with the formation of the corresponding exo,trans-tetracyclo[5.2.1.02, 6.03, 5]-8-decenes and 3-vinykltricyclo[3.2.1.02, 4]-6-octenes with a total yield of 70–90%, and the yield of the latter increased with an increase in the temperature in going from (PhO)3P·CuCl to CuCl.
2.  The reaction of 3-methyl-3-cyclopropylcyclopropene with more complex polycyclic hydrocarbons containing a bicyclo[2.2.1]heptene fragment takes place less efficiently and less selectively than with norbornene, and yields a mixture of products of [1+2]- and [2+2]-cycloaddition with a yield of 30–65% and significant dimerization of the starting cyclopropene in the presence of (PhO)3P·CuCl even at –20C.
For previous communication, see [1].  相似文献   

2.
The Ziegler catalyst TiCl4-Et2AlCl and the arenetitanium(II) complex (η6-C6H6)Ti(II)(AlCl4)2 induce [6 + 2]cycloaddition reactions of cycloheptatriene with dienes and acetylenes. Addition to 1,3-butadiene affords 7 - endo - vinyl - bicyclo[4.2.1]nona - 2,4 - diene (main product) and bicyclo[4.4.1]- undeca - 2,4,8 - triene, a product of [6+4]cycloaddition. Isoprene reacts similarly, yielding mainly 7- endo - isopropenyl - bicyclo[4.2.1]nona - 2,4 - diene. 2,3 - Dimethyl - 1,3 - butadiene gives 8,9dimethylbicyclo [4.4.1]undeca - 2,4,8 - triene, a product of [6 + 4]cycloaddition, while [6 + 2]cross-adducts are minor products. The reaction of cycloheptatriene with norbornadiene gives mainly hexacyclo[6.5.1.02,7.03,12.6,10.09,13]tetradec - 4 - ene via [6+2]cycloaddition followed by intramolecular Diels-Alder reaction. As a by-product, pentacyclo[7.5.0.02,7.03,5.048]tetradeca - 10,12 - diene is formed by a [2+2+2]mechanism. Addition of cycloheptatriene to diphenylacetylene and bis - (tri- methylsilyl)acetylene furnishes sustituted bicyclo[4.2.1]nona - 2,4,7 - trienes. Alkenes, E,E-2,4 - hexadiene and 1,3 - cyclooctadiene are unreactive. The [6+2]cycloaddition is made possible by coordination of cycloheptatriene to titanium, which changes the symmetry of the frontier orbitals in the triene. The reactivity of the trienophile is also enhanced by coordination to the catalyst.  相似文献   

3.
The Knoevenagel condensations of 5-[3-(trifluoromethyl)phenyl]furan-2-carbaldehyde with seven compounds containing an active methyl or methylene group have been studied. The compounds used were: methyl 2-cyanoacetate, malononitrile, 2-furylacetonitrile, acetophenone, 2-thioxo-1,3-thiazolidin-4-one (rhodanine), 5,5-dimethylcyclohexane-1,3-dione (dimedone), and methyl 2-azidoacetate. The effect of microwave irradiation on the condensation reactions was studied and compared with “’classical”’ conditions. Thermolysis of methyl 2-azido-3-{5-[3-(trifluoromethyl)phenyl]-2-furyl}propenoate afforded methyl 2-[3-(trifluoromethyl)phenyl)]-4H-furo[3,2-b]pyrrole-5-carboxylate. (2E)-3-{ 5-[3-(Trifluoromethyl)phenyl]-2-furyl}propenoic acid was converted to the corresponding azide, which was cyclized on heating into 2-[3-(trifluoromethyl)phenyl)]-4,5-dihydrofuro[3,2-c]pyridin-4-one. The latter after successive action of POCl3 and NH2NH2-Pd/C gave 2-[3-(trifluoromethyl)-phenyl]furo[3,2-c]pyridine. Published in Khimiya Geterotsiklicheskikh Soedinenii, No. 6, pp. 825–831, June, 2006.  相似文献   

4.
Conclusions The Grignard reagent, obtained from 5-(propyn-2-yl)bicyclo[2.2.1]-2-heptene, reacts easily with Ac2O, Et2SiCl2, Me3SiCl, and acrolein to give in high yields [2.2.1]bicyclo-2-heptene derivativesthat contain in the side chain either an acetyl, diethylsilyl, trimethylsilyl, or a hydroxypropen-1-yl group. The Mannich reaction was also run with 5-(propyn-2-yl)bicyclo[2.2.1]-2-heptene.Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No. 11, pp. 2586–2589, November, 1982.  相似文献   

5.
1-Ethynyl-1-cyclohexanol reacts with a triaryltin hydride Ar3SnH (Ar = phenyl, p-tolyl) and generates the corresponding (Z)-1-[2-(triarylstannyl)vinyl]-1-cyclohexanol. The product obtained reacts with one or two equivalents of halogen (ICl or I2) to form the associated (Z)-1-[2-(diarylhalostannyl)-vinyl]-1-cyclohexanol or (Z)-1-[2-(aryldihalostannyl)vinyl]-1-cyclohexanol, respectively. All compounds were characterized by elemental analysis, 1H, 13C, 119Sn NMR and Mössbauer spectroscopy.  相似文献   

6.
Zusammenfassung Durch spektrophotometrische Messungen in Dimethylformamid (DMF) werden die Koordinationsformen [CuCl]+ und [CuCl3] sowie [NiCl]+, [NiCl3] und [NiCl4]2– nachgewiesen. Bei Nickel(II)-chlorid und Kupfer(II)-chlorid wird Autokomplexbildung diskutiert. Die Solvate [Cu(DMF)4] (ClO4)2 und [Ni(DMF)6] (ClO4)2 werden isoliert.Im Zuge der Untersuchungen über Chlorokomplexe von Ionen der Übergangsmetalle1, 2 in nichtwäßrigen Lösungsmitteln wurden die Spektren der Lösungen von Kupfer(II)- und Nikkel(II)-perchlorat inDMF in Gegenwart verschiedener Mengen Tetraäthylammoniumchlorid aufgenommen.Mit 5 Abbildungen  相似文献   

7.
Nitration of 4-methyl-2-[2-(nitro-2-furyl)vinyl]thiazole with a mixture of concentrated nitric and sulfuric acids leads to 4-methyl-5-nitro-2-[2-(3,5-dinitro-2-furyl)vinyl]thiazole. Under the same conditions 2-methyl- and 2-acetamido-4-[1-R-2-(5-nitro-2-furyl)vinyl]thiazoles (R=CH3, Cl) are nitrated in the 3 position of the furan ring, 2-amino-4-[1-chloro-2-(5-nitro-2-furyl)vinyl]thiazole is nitrated in the 5 position of the thiazole ring and 2-acetamido-5-nitro-4-[2-(2-furyl)vinyl]thiazole undergoes profound changes. Under the influence of a mixture of of nitric acid and acetic anhydride the latter compound is converted quantitatively to the 5-nitro derivative (with respect to the furan ring), whereas 4-[2-(5-nitro-2-furyl)vinyl]thiazole derivatives do not undergo reaction.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 3, pp. 314–317, March, 1977.  相似文献   

8.
4-[2-cyclopentenyl]-3-hydroxy [1] bonzopyran-2-one(3) was cyclised to the bicyclie coumar in-1,3-ethano-2-bromo-1,2-dihydro-3H-pyrano [2,3-c] [1] benzopyran-5-one (6) by a sequence of reactions viz. acetylation of 3, addition of bromine to cyclopenteny double bond and treating the resulting acetyldibromo compound (5) with 4% alcoholic KOH, Cyclisation of compound (3) with mercuric acetate in methanol gave condensed furan derivative 7 which on reductive demercuration with zinc borohydride in dimethoxyethane gave the 1,3-propano-1,2-dihydrofuro [2,3-c] [1] benzopyran-4-one, 8. Cyclisation of compound 2 with come. H2SO4 furnished a mixture of bicyclic derivative 9 ad furo coumarin derivative 8.  相似文献   

9.
The speciation in the phosphitomolybdate system, H+-MoO4(2-)-(HP)O(3)2-, has been determined from combined potentiometric and 31P NMR measurements in 0.600 M Na(Cl) medium at 298(1) K. Potentiometric titration data were collected in the ranges 2.5<-log[H+]<6.2, 40.0相似文献   

10.
Synthesis of binuclear Cu(II) terminally closed [ 2+2 ]- double-stranded helicate-like macrocycles 1, 1′ , 1″ , 2 , 2′ , 2″ and 2+4- μ4-oxo tetranuclear open frame complexes 3 , 3′ , 3″ , 4 , 4′ , 4″ are established. Adapting one-pot self-assembly technique from simple three components systems: 1,1′-binaphthyl-2,2′-diamine, 4-methyl-2,6-diformyl phenol and cupric salts, the helicate-like [ 2+2 ]- macrocyclic complexes 1–1″, 2–2″ and 2+4- μ4-oxo tetranuclear complexes 3–3″ , 4–4″ were obtained by appropriately altering the reaction condition such as temperature and subcomponent ratio. Density Functional Theory (DFT) calculations were carried out for understanding the structural geometries, intermediates involved in the diverse formation of [ 2+2 ] and 2+4 frameworks. The single crystal X-ray structures obtained for 1′ , 2 and 3 confirms the self-assembly process in line with DFT. This detailed analysis tempted us to derive a plausible mechanism for this long standing challenge in the synthesis of such macrocycles using 1,1′-binaphthyl-2,2′-diamine (BNDA) and aromatic aldehyde. The chiroptical properties of enantiopure complexes and their catalytic applications in asymmetric oxidative coupling of 2-naphthol to chiral 1,1’-Bi-2-naphthol (BINOL) achieved in good yield and ee were discussed.  相似文献   

11.
Two Ru(II) complexes [Ru(dmb)2(dtmi)](ClO4)2 (1) (dmb = 4, 4′-dimethyl-2, 2′-bipyridine, dtmi = 3-(pyrazin-2-yl)-as-triazino[5, 6-f]-5-methoxylisatin) and [Ru(dmb)2(dtni)](ClO4)2 (2) (dtni = 3-(pyrazin-2-yl)-as-triazino[5, 6-f]-5-nitroisatin) have been synthesized and characterized by elemental analysis, ES-MS, and 1H NMR. DNA-binding behaviors of these complexes have been investigated by spectroscopic titration, viscosity measurements, and thermal denaturation. The results indicate that the two complexes interact with calf thymus DNA by intercalation.  相似文献   

12.
Summary Complexes [VO(Htaptsc)SO4] and [M(Htaptsc)2Cl2] [M=MnII, NiII, CdII or HgII], Cu(Htaptsc)Cl2 and [M(Htaptsc)Cl2] [M=CoII or ZnII], and deprotonated compounds Co(taptsc)2 and [M(taptsc)2] [M=VIVO, MnII, NiII, CuII or ZnII] [Htaptsc=4-(2-thiazolyl)-1-(2-acetylpyridine)thiosemicarbazone] have been characterized by elemental analyses, electrical conductivity and magnetic susceptibility measurements and electronic, e.s.r. and i.r. spectroscopy. The bonding sites of Htaptsc and the bonding and stereochemistry of the complexes are discussed.  相似文献   

13.
The ligands 2-(allyl)pyridine(APy), and 2-(1-methallyl)pyridine (1-MAPy) react with [Pt2X4(PEt3)2] (X = Cl or Br), in acetone solution to give complexes of the type [PtX(PEt3)L] [PtX3(PEt3)], (L = APy or 1-MAPy), which contain a bidentate 2-(alkenyl)pyridine, whereas the same reaction in benzene solution gives trans-[PtBr2(PEt3)L], (L = APy or 1-MAPy), which contains a monodentate 2-(alkenyl)pyridine; 1H NMR spectra indicate that both types of product undergo olefin exchange in solution. The same reaction with 2-(3-methallyl)-pyridine [2-(2-butenyl)pyridine] (3-MAPy), 2-(3,3-dimethylallyl)pyridine [2-(3-methyl-2-butenyl)pyridine] (3,3-DMAPy), and 2-(3-butenyl)pyridine (BPy), in either acetone or benzene solution, gives only trans-[PtBr2(PEt3)L]. The reaction of trans-[PtBr2(PEt3)L] (L = APy or 3-MAPy) with AgClO4 gives [PtBr(PEt3)L]ClO4. Complexes of the type [PtCl2L], which contain bidentate 2-(alkenyl)pyridines, result on reaction of L = APy, 3-MAPy, 3,3-DMAPy, BPy, MBPy with [Pt2Cl4(C2H4)2].  相似文献   

14.
Copper(II) complexes of the ligands N2-[(R)-2-hydroxypropyl]- and N2-[(S)-2-hydroxypropyl]-(S)-phenylalaninamide performed chiral separation of N-dansyl-protected and unmodified amino acids in HPLC (reversed phase). With the aim of investigating which species are potentially involved in the discrimination mechanism, the two ligands were synthesized and their complexation equilibria with Cu2+ studied by potentiometry and spectrophotometry in aqueous solution up to pH 11.7. The formation constants of the species observed, [CuL]2+, [CuL2]2+, [CuLH–1]+, [CuL2H–1]+, [CuL2H–2], and [CuL2H–3]?, were quite similar for both compounds and were compared to those of (S)-phenylalaninamide. Most probably, in [CuL2H–3]? the ligands behave as terdentate, with the deprotonated OH group occupying an apical position.  相似文献   

15.
《Tetrahedron letters》1988,29(8):921-924
1,3-Diazabutadienes react with diphenylketene in [2+2] - and [4+2] cycloaddition reactions, depending on the substitution pattern. Spectroscopic data (IR, 1H- and 13C-NMR) and results of quantummechanical model calculations (ab initio 3-21G) are presented.  相似文献   

16.
2-{[3-(Triethoxysilyl)propyl]amino}pyridine and Derivatives   总被引:1,自引:0,他引:1  
2-{[3-(Triethoxysilyl)propyl]amino}pyridine is synthesized by condensation of [3-(triethoxysilyl)propyl]amine with 2-aminopyridine. Its peretherification with triethanolamine leads to 2-[(3-silatranylpropyl)amino]pyridine and hydrolytic copolycondensation with tetraethoxysilane to cross-linked organosilicon copolymer {SiO2·2[O1.5Si(CH2)3NHC6H4N]} n . The latter in the medium of hydrochloric acid behaves as an anionite in respect of anionic chlorocomplexes of gold(III), platinum(IV), palladium(II) and rhodiumIII).  相似文献   

17.
An asymmetrical synthesis of bicyclo[2.2.1]hept-2-enes is described performed by [4+2]-cyclo-addition of (-)-menthyl acrylate, (-)-menthyl methacrylate to cyclopentadiene in the presence of BBr3.The effect of different factors on isomer composition, yield, and enantiomeric purity of the compoundsobtained was investigated. Kovatch indices were determined and boiling points were estimated with the use of gas-liquid chromatography.  相似文献   

18.
Synthesis and characterisation of (Z)-1-[2(triphenylstannyl)vinyl]-l-cyclododecanol, c-(CH2)11C(OH)CH=CHSnPh3, are reported, together with its halogenation by I2, Br2 and ICI to yield derivatives of the types c-(CH2)11C(OH)CH=CHSnPhs?nXn (n=1, 2; X=I, Br, Cl, respectively). The molecular structures of two compounds have been determined by X-ray diffraction analysis. The tin atom exhibits a distorted tetrahedral geometry in the crystal of (Z)-l-[2–(triphenylstannyI)vinyl]-l-cyclododecanol, but a trigonal bipyramidal geometry in the monoiodo-derivative (Z)-l-[2]-(diphenyliodo-stannyl)vinyl)-1-cyclododecanol and other derivatives, in which significant intramolecular coordinative interaction HO→Sn ia observed. And the formation of a five-membered tin containing ring is significant for their antitumour activities.  相似文献   

19.
The tetrakisimidazolium salt H4- 2 (Br)4, featuring a central benzene linker and 1,2,4,5-(nBu-imidazolium-Ph-CH=CH-) substituents reacts with Ag2O in the presence of AgBF4 to yield the tetranuclear, oktakis-NHC assembly [ 3 ](BF4)4. Cation [ 3 ]4+ features four pairs of olefins from the two tetrakis-NHC ligands perfectly arranged for a subsequent [2+2] cycloaddition. Irradiation of [ 3 ](BF4)4 with a high pressure Hg lamp connects the two tetra-NHC ligands through four cyclobutane linkers to give compound [ 4 ](BF4)4. Removal of the template metals yields the novel oktakisimidazolium salt H8- 5 (BF4)8. The tetrakisimidazolium salt H4- 2 (BF4)4 and the oktakisimidazolium salt H8- 5 (BF4)8 have been used as multivalent anion receptors and their anion binding properties towards six different anions have been compared.  相似文献   

20.
《Polyhedron》1999,18(8-9):1207-1210
A series of [OC-6-33][OsCl2(CO)2L2] (L=phosphine) complexes have been prepared by cleavage of [OsCl(μ-Cl)(CO)3]2 with a variety of phosphines for a comparison of spectroscopic data with those for the related [OC-6-13][OsF2(CO)2L2] (L=phosphine). The X-ray structural characterisation of [OC-6-33][OsCl2(CO)2(PEt3)2] represents the first structural characterisation for this class of complex.  相似文献   

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