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Piperidine 1-phenyl

Piperidine, 1-phenyl-, 34, 79 Piperidine acetate, 32, 33 Potassium, 30, 19, 20 34, 54 directions for safe handling of, 30, 20 Potassium acid acetylenedicarboxylate,... [Pg.53]

Boron triphenyl-aniline, pyridine, q[uinoline, quinaldine, piperidine, phenyl hydrazine, 227. [Pg.404]

With malonic acid in a mixture of pyridine and piperidine 2-phenyl-4-formyl-5-chlorothiazole yields 2-phenyl-5-chloro-4-thiazoleacrylic acid (103). [Pg.534]

If there is no phenyl substituent in the 3-position the amination ability decreases. The acyloxaziridine (104) yields only 11% of a semicarbazide derivative with piperidine. In the presence of strong bases an intramolecular amination competes. Compound (104) reacts with methoxide within a couple of seconds to give phenylhydrazine carboxylic ester (106), and with cyclohexylamine to give the substituted semicarbazide (107). A diaziridinone (105) is assumed to be the common intermediate, formed by an intramolecular reaction from deprotonated (104) (67CB2600). [Pg.210]

Piperidine, 3-aryIoxymethyI-4-phenyI-as antidepressant, 1, 169 Piperidine, JV-bromo-photoelectron spectroscopy, 2, 142 Piperidine, cis-4- t-butyl-r- cyclohexyl-1 -phenyl-X-ray analysis, 2, 161 Piperidine, 3-chloro-pyrrolidines from, 4, 147 Piperidine, N-chloro-photoelectron spectroscopy, 2, 142 reactions, 2, 373 trimerization, 3, 510 Piperidine, 4-cycIopentyI-2,6-dioxo-synthesis... [Pg.746]

Reaction of the pyrrolidine enamine of cyclohexanone with phenyl vinyl sulfone afforded a 9 1 mixture of the tri- and tetrasubstituted isomers (2(5). The preference of the less substituted isomer in this case is in keeping with the greater overlap requirement between the n electrons of the double bond and the electron pair on the nitrogen atom, since the double bond exo to the five-membered ring is much more favored than the double bond exo to the six-membered ring. It is, however, hard to explain the formation of largely the trisubstituted isomer with the piperidine enamine of cyclohexanone, where both of the rings involved are six-membered. [Pg.16]

The piperidine, pyrrolidine, and morpholine enamines of cyclohexanone substituted in the 3-position by methyl, phenyl, and l-butyl have been prepared (49). The complexity of the NMR spectra in the ethylenic hydrogen region indicated a mixture of isomeric enamines. Estimation of the per cent of each isomer by examination of the NMR spectra was not possible, nor were the isomeric enamines separable by vapor-phase chromatography. [Pg.65]

Hydrolysis of an enamine yields a carbonyl compound and a secondary amine. Only a few rate constants are mentioned in the literature. The rate of hydrolysis of l-(jS-styryl)piperidine and l-(l-hexenyl)piperidine have been determined in 95% ethanol at 20°C 13). The values for the first-order rate constants are 4 x 10 sec and approximately 10 sec , respectively. Apart from steric effects the difference in rate may be interpreted in terms of resonance stabilization by the phenyl group on the vinyl amine structure, thus lowering the nucleophilic reactivity of the /3-carbon atom of that enamine. [Pg.103]

Azides can use enamines as dipolarophiles for ],3 cycloadditions to form triazolines. These azides can be formate ester azides (186), phenyl azides (187-195), arylsulfony] azides (191-193,196), or benzoylazides (197,198). For example, the reaction between phenyl azide (138) and the piperidine enamine of propionaldehyde (139) gives 1 -phenyl-4-methy l-5-( 1 -piperidino)-4,5-dihydro-l,2,3-triazole (140), exclusively, in a 53% yield (190). None of the isomeric l-phenyl-5-methyl product was formed. This indicates that the... [Pg.244]

Eda and Kurth applied a similar solid-phase combinatorial strategy for synthesis of pyridinium, tetrahydropyridine, and piperidine frameworks as potential inhibitors of vesicular acetylcholine transporter. One member of the small library produced was prepared from amino-functionalized trityl resin reacting with a 4-phenyl Zincke salt to give resin-bound product 62 (Scheme 8.4.21). After ion exchange and cleavage from the resin, pyridinium 63 was isolated. Alternatively, borohydride reduction of 62 led to the 1,2,3,6-tetrahydropyridine 64, which could be hydrogenated to the corresponding piperidine 65. [Pg.364]

According to the Friedlander method, the condensation of the readily available 2-aminoiiicotinic aldehyde (20a) (74JOC726) or its 6-phenyl derivative (20b) [66JCS(C)315] with nitroacetic acid (21) in boiling ethanol with piperidine as catalyst is another example of this method, which affords in fair yields the corresponding 3-nitro-l,8-naphthyridin-2(lFI)-ones (22a, 74%) and (22b, 47%), respectively [66JCS(C)315]. [Pg.289]

Irradiation of piperidine 62 in CH2CI2 at concentration of 3mg/ml in the presence of 1-methylimidazole using a high-pressure mercury lamp (150 w) yielded 2-phenyl-4,6,7,8,9,9n-hexahydropyrido[2,l-h][l, 3]oxazin-4-one (01 SI258). [Pg.186]

Dicyano-2,4,8-triphenyl-7-phenylsulfonyl-6/f-pyrido[], 2-a]pyrimi-dine-6-thione was obtained in the reaction of 6-amino-1-benzoyl-5-cyano-4-phenyl-3-phenylsulfonylpyridin-2(]//)-one and benzylidenemalononitrile in the presence of piperidine in boiling dioxane for 4h in 59% yields (98M1049). [Pg.241]

Oxidative cyclization of 1 -[(2 -aminocarbonyl)phenyl]piperidine and its 4 -substituted derivatives with Hg(OAc)2-EDTA reagent afforded 1,2,3,4-tet-rahydro-6//-pyrido[2,l-Z)]quinazolin-6-one and its 3-substituted derivatives in 36-82% yields (99ZN(B)1577). Similarly, ( )-2-(piperidin-2-yl)benzal-doximes gave 2,3,4,4u-tetrahydro-l//-pyrido[l,2-u]quinazolin-5-oxide and... [Pg.262]

Carbamates in some ways incorporate features of both esters and amides in the same function. Reaction of the piperidine bearing the diol side chain (88) with phenyl isocyanate affords the bis-carbamate. This product, diperodon (89) has found... [Pg.18]

The line of reasoning that leads from morphine to the 4-phenyl-piperidines is so clear—if unhistoric—as to demand exposition in an integral chapter. The chronologically oriented chapter on the development of the local anesthetics is included specifically to give the reader some appreciation of one of the first approaches to drug development. [Pg.480]

It yields the following crystalline derivatives, which are suitable for its identification nitrosochloride melting at 103°, nitrol-piperidine melting at 108°, nitrol-anilide melting at 110°, and phenyl-urethane melting at 85°. [Pg.133]

Chemical Name (+)-1 -Benzyl-4-[(2,6-dioxo-3-phenyl)-3-piperidyl] piperidine Common Name Dexbenzetimide dextrobenzetimide benzetimide Structural Formula ... [Pg.455]

Under a pressure of 4,5 ml the 1 methyl-4-phenyl-piperidine-4-carboxylic acid nitrile passes over at a temperature of about 148°C in the form of a colorless oil under a pressure of 6 ml it passes over at about 158°C. After having been allowed to cool the distillate solidifies completely to form a crystalline mass. Its solidification point is at 53°C the yield amounts to about 135 parts, that is, about % of the theoretical yield. When recrystallized from isopropyl alcohol the hydrochloride of the nitrile forms colorless crystals, readily soluble in water and melting at 221° to 222°C. [Pg.932]

The nitrile may best be saponified with methyl alcoholic potash while heating to 190° to 200°C with application of pressure. After the methyl alcohol has evaporated the salt is introduced into water and by the addition of dilute mineral acid until the alkaline reaction to phenolphthalein has just disappeared, the amphoteric 1-methyl-4-phenyl-piperidine-4-carbOxylic acid is precipitated while hot in the form of a colorless, coarsely crystalline powder. When dried On the water bath the acid still contains 1 mol of crystal water which is lost only at a raised temperature. The acid melts at 299°C. Reaction with ethanol yields the ester melting at 30°C and subsequent reaction with HCI gives the hydrochloride melting at 187° to 188°C. [Pg.933]

Valethamate bromide dl-1 -Benzyl-4-(1,3-dicyano-1 -phenyl-propyl)piperidine HCI Dexetimide Benzylethanolamine Phenmetrazine... [Pg.1616]

Finke, P. E., Oates, B., Mills, S. G., MacCoss, M., Malkowitz, L., Springer, M. S., Gould, S. L., DeMartino, J. A., Carella, A. Carver, G., et al. (2001). Antagonists of the human CCR5 receptor as anti-HIV-1 agents. Part 4 synthesis and structure—Activity relationships for l-[7V-(Methyl)-7V-(phenylsulfonyl)amino]-2-(phenyl)-4-(4-(7V-(alkyl)-7V-(benzylox-ycarbonyl)amino)piperidin-l-yl)butanes. Bioorg. Med. Chem. Lett. 11 2475-2479. [Pg.172]

Photolysis of aryl azides in amine solution, with a tertiary amine as cosolvent to promote stabilization of the singlet nitrene, has met with some success. For example, the yield of 2-piperidino-3 W-azepme. obtained by the photolysis of phenyl azide in piperidine, is increased from 35 to 58% in the presence of A A /V. /V -tetramethylethylenediamine (TMLDA).180 Also, an improved yield (36 to 60 %) of A,(V-diethyl-3W-azepin-2-amine (38, R = Et) can be obtained by irradiating phenyl azide in triethylamine, rather than in dicthylaminc, solution.181 Photolysis (or thermolysis) of phenyl azide in TMEDA produces, in each case, 38 (R = Et) in 40% yield.181 In contrast, irradiation of phenyl azide in aniline with trimethylamine as cosolvent furnishes jV-phenyl-377-azepin-2-amine (32, R = Ph) in only low yield (2%).35... [Pg.147]

The number of reactions that fit into this second class are manifold. Some typical examples are the amine-catalyzed reactions of 2,4-dinitrochlorobenzene with n-butylamine in chloroform (k"/k = 2.59 l.mole-1)23, with allylamine in chloroform (k"jk — 4.60 l.mole-1)24 and with allylamine in ethanol (k"fk =0.36 l.mole-1)25 and the amine-catalyzed reaction of p-nitrofluorobenzene with piperidine in polar solvents (k"/k < 3.2 l.mole-1)26. A typical example of a strongly catalyzed system is the reaction of 2,4-dinitrophenyl phenyl ether with piperidine in 60 % dioxan-40 % water27. [Pg.410]


See other pages where Piperidine 1-phenyl is mentioned: [Pg.79]    [Pg.103]    [Pg.214]    [Pg.214]    [Pg.1705]    [Pg.136]    [Pg.573]    [Pg.382]    [Pg.382]    [Pg.104]    [Pg.269]    [Pg.42]    [Pg.746]    [Pg.294]    [Pg.143]    [Pg.150]    [Pg.45]    [Pg.94]    [Pg.177]    [Pg.455]    [Pg.734]    [Pg.90]    [Pg.128]    [Pg.86]   
See also in sourсe #XX -- [ Pg.34 , Pg.79 ]

See also in sourсe #XX -- [ Pg.34 , Pg.79 ]

See also in sourсe #XX -- [ Pg.34 , Pg.79 ]

See also in sourсe #XX -- [ Pg.34 , Pg.79 ]




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L-methyl-4-phenyl-4-propionoxy-piperidine

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