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Carboxylic acids heterocycles

Typical nucleophiles known to react with coordinated alkenes are water, alcohols, carboxylic acids, ammonia, amines, enamines, and active methylene compounds 11.12]. The intramolecular version is particularly useful for syntheses of various heterocyclic compounds[l 3,14]. CO and aromatics also react with alkenes. The oxidation reactions of alkenes can be classified further based on these attacking species. Under certain conditions, especially in the presence of bases, the rr-alkene complex 4 is converted into the 7r-allylic complex 5. Various stoichiometric reactions of alkenes via 7r-allylic complex 5 are treated in Section 4. [Pg.21]

The intramolecular reaction oF allcenes with various O and N functional groups offers useful synthetic methods for heterocycles[13,14,166]. The reaction of unsaturated carboxylic acids affords lactones by either exo- or endo-cyclization depending on the positions of the double bond. The reaction of sodium salts of the 3-alkenoic acid 143 and 4-alkenoic acid 144 with Li2PdCl4 affords mostly five-membcrcd lactones in 30-40% yields[167]. Both 5-hexe-noic acid (145) and 4-hexenoic acid (146) are converted to five- or six-mem-bered lactones depending on the solvents and bases[168]. Conjugated 2,4-pentadienoic acid (147) is cyclized with Li2PdCl4 to give 2-pyrone (148) in water[i69]. [Pg.41]

The synthesis of 9H-benzo[2,l-e]thiazolo-[2,3-c]-as-triazine (401) was achieved by oxydative cyclization of 2-imino-3-(o-aminophenyl)-4-phenyl-4-thiazoline (718, 719). This latter reacts also with paraformaldehyde in hot toluene yielding 3-phenyl-9H.10H-benzo[l,2-/]thiazolo-[2,3-d][l,3,5]triazepine (402) (720). This heterocyclic sytem is also formed when carboxylic acids replace paraformaldehyde (Scheme 230) (721). [Pg.129]

The most widely used method for the preparation of carboxylic acids is ester hydrolysis. The esters are generally prepared by heterocyclization (cf. Chapter II), the most useful and versatile of which is the Hantzsch s synthesis, that is the condensation of an halogenated a- or /3 keto ester with a thioamide (1-20). For example ethyl 4-thiazole carboxylate (3) was prepared by Jones et al. from ethyl a-bromoacetoacetate (1) and thioformamide (2) (1). Hydrolysis of the ester with potassium hydroxide gave the corresponding acid (4) after acidification (Scheme 1). [Pg.520]

Table 3 -Bond Lengths and Angles of Heterocycle 2-Carboxylic Acids... Table 3 -Bond Lengths and Angles of Heterocycle 2-Carboxylic Acids...
Carboxylic acids and their anhydrides acy late a variety of benzene derivatives, fused ring systems, and heterocyclic compounds. An improved procedure for the preparation of l,4-difluoroanthracene-9,10-dione involves reacting phthalic anhydride and 1,4-difluorobenzene to prepare an intermediate carboxylic acid [35] Intramolecular acylation in polyphosphonc acid completes the synthesis (equahon 24). [Pg.415]

Hexafluoroacetone and certain perfluorinated or partially fluorinated ketones, aldehydes, and imines react with a-functionalized carboxylic acids (e.g., a-amino, a-At-methylamino [S3, 84], a-hydroxy [S5], and a-mercapto [Sd] acids) to give five-membered heterocyclic systems (equation 13). [Pg.845]

A -Methylation of the NH of heterocycles using 1 is also known as exemplified by the methylation of indole/ The interesting mechanism is delineated below. O-methylation of weak acids such as phenols, carboxylic acids and oximes as well as 5-methylation such as A -phenylisorhodanine, certain thioketones, and dithiocarboxylic acids have also been reported." ... [Pg.11]

Dimethyl acetylenedicarboxylate gave first a similar adduct (2) which then added further molecules of furan yielding (3) and subsequently (4). Between 1931 and 1940 the reactions of acetylenedi-carboxylic acid and its dimethyl ester with a number of nitrogen containing heterocyclic compounds were examined, and structures were proposed for the products. Apart from an unpublished investigation of the products from pyridine and dimethyl acetylenedicar-... [Pg.126]

As expected for A-heterocyclic a-carboxylic acids, j8-carboline-l-carboxylic acids decarboxylate readily on heating and... [Pg.156]

Carboxylic acids and esters of heterocyclic series including lactones 98JCS(P1)2451, 99JCS(P1)3537. [Pg.203]

Nonclassical Wittig reaction, olefination by phosphoranes interaction with carboxylic acid derivatives, in transformation of heterocycles 99JCS(P1)3049. [Pg.211]

For this reason, the heterocyclization of acetylenic derivatives of pyrazolecar-boxylic acids with different arrangements in the ring of the interacting groups was studied (Table XXVI). The reaction is carried out in boiling pyridine in the presence of catalytic amounts of PhC=CCu (81IZV1342). 4-Acetylenyl-l-methylpyrazole-5-carboxylic acids (Scheme 121) are fully isomerized into the pyranopyrazoles in 20 min in 62-84% yields. [Pg.58]

In the heterocyclization reactions of 4-acetylenyl-l-methylpyrazole-3-carbox-ylic acids and 4-acetylenyl-l-methylpyrazole-5-carboxylic acids the behavior is the same. Isomeric l-methyl-4-phenylethynylpyrazole-3-carboxylic acid forms... [Pg.59]

JA742). However, the heterocyclization of 4-phenylethynylpyrazole-3- and 4-phenylethynylpyrazole-5-carboxylic acid in alcohol or acetonitrile solutions in the presence of AgNOs caused, once again, the closure of the six-membered lactones. [Pg.60]

Intramolecular addition of the amide group to the triple bond in pyrazoles is more difficult, and results in closure of the 5-lactam rather than the y-lactam ring. The reaction time of the 4-phenylethynylpyrazole-3-carboxylic acid amide under the same conditions is extended to 42 h (Scheme 129) (Table XXVII). The cyclization of l-methyl-4-phenylethynyl-l//-pyrazole-3-carboxylic acid amide, in which the acetylene substituent is located in the 7r-electron-rich position of the heterocycle, is the only one complete after 107 h (Scheme 130) (90IZV2089). [Pg.61]

Ozonolysis of 5,8,9-trihydroxy-2,3-dihydro-l//-pyrimido[l, 2-n]quinoline-3-carboxylic acid (420), obtained from isopyoverdin isolated from Pseudomonas putida BTPl by acidic hydrolysis, gave l-2,4-diaminobutyric acid, which confirmed the hypothesis that heterocyclic chromophores 1 and 4 of pyoverdin and isopyoverdin, respectively, could have the same precursor, and the configuration at C(3) should be 5 (97ZN(C)549). [Pg.260]

The Pschorr reaction, originally applied to the synthesis of phen-anthrene and its derivatives,has been adapted to the formation of new heterocyclic systems.In its original form, it consisted of treating a diazonium salt with copper powder in acid solution in this way, rans-o-amino-a-phenylcinnamic acid was converted into phen-anthrene-9-carboxylic acid, Eq. (20). Variants of the reaction include cyclizations such as that in Eq. (21). The reaction may be horaolytic... [Pg.148]

Decarboxylation of isoxazole-3-carboxylic acids is related to the nucleophilic cleavage of the isoxazole ring as far as the nature of the reaction products is concerned. It occurs at temperatures above 200°C and is accompanied by the cleavage of the nitrogen-oxygen bond of the heterocyclic ring to yield a j8-ketonitrile. It was first reported by Claisen with 5-methyl- and 5-phenyl-isoxazole-3-carboxylic acids (153- 154).Under the reaction conditions, j8-ketonitriles condense... [Pg.410]

Carboxylic acid derivatives of heterocycles have proved a source of compounds that show the same allergic mediator release inhibiting activity as sodium cromoglycate. A number of these agents have been taken to the clinic for trial as antiallergic agents. [Pg.235]


See other pages where Carboxylic acids heterocycles is mentioned: [Pg.1008]    [Pg.395]    [Pg.436]    [Pg.242]    [Pg.1008]    [Pg.395]    [Pg.436]    [Pg.242]    [Pg.469]    [Pg.319]    [Pg.116]    [Pg.155]    [Pg.35]    [Pg.231]    [Pg.534]    [Pg.241]    [Pg.28]    [Pg.241]    [Pg.253]    [Pg.9]    [Pg.63]    [Pg.298]    [Pg.176]    [Pg.376]    [Pg.379]    [Pg.110]    [Pg.16]    [Pg.82]    [Pg.168]    [Pg.788]   
See also in sourсe #XX -- [ Pg.720 ]




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1.3- Heterocyclics carboxylic acid amide

Carboxylic acids heterocyclic

Carboxylic acids heterocyclic

Heterocycles reaction with carboxylic acids

Heterocycles, acylation carboxylic acids

Heterocyclic Carboxylic Acids Production

Heterocyclic acids

N- and O-Heterocyclic carboxylic acids

Unsubstituted Diorganotin Carboxylates of Heterocyclic and Unsaturated Acids

Unsubstituted Triorganotin Carboxylates Derived from Heterocyclic Acids

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