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Aryl derivatives amination reactions

With the exception of the nuclear amination of 4-methylthiazole by sodium amide (341, 346) the main reactions of nucleophiles with thiazole and its simple alkyl or aryl derivatives involve the abstraction of a ring or substituent proton by a strongly basic nucleophile followed by the addition of an electrophile to the intermediate. Nucleophilic substitution of halogens is discussed in Chapter V. [Pg.113]

Aromatic nitro compounds are often strongly colored. They frequently produce characteristic, colored, quinoid derivatives on reaction with alkali or compounds with reactive methylene groups. Reduction to primary aryl amines followed by diazotization and coupling with phenols yields azo dyestuffs. Aryl amines can also react with aldehydes with formation of Schiff s bases to yield azomethines. [Pg.66]

By application of the Schmidt reaction, the conversion of a carboxylic acid into an amine that has one carbon atom less than the carboxylic acid, can be achieved in one step. This may be of advantage when compared to the Curtius reaction or the Hofmann rearrangement, however the reaction conditions are more drastic. With long-chain, aliphatic carboxylic acids yields are generally good, while with aryl derivatives yields are often low. [Pg.253]

Palladium-catalyzed cyclization reactions with aryl halides have been used to synthesize pyrazole derivatives. V-Aryl-lV-(c>-bromobenzyl)hydrazines 26 participated in a palladium-catalyzed intramolecular amination reaction to give 2-aryl-2W-indazoles 27 . Palladium-catalyzed cascade intermolecular queuing-cyclocondensation reaction of o-iodophenol (28) with dimethylallene and aryl hydrazines provided pyrazolyl chromanones 29 <00TL7129>. A novel one-pot synthesis of 3,5-disubstituted-2-pyrazolines 32 has been achieved with an unexpected coupling-isomerization sequence of haloarene 30, propargyl alcohol 31, and methylhydrazine <00ACIE1253>. [Pg.169]

A further example of the use of a chiral anion in conjunction with a chiral amine was recently reported by Melchiorre and co-workers who described the asymmetric alkylation of indoles with a,P-unsaturated ketones (Scheme 65) [212]. The quinine derived amine salt of phenyl glycine (159) (10-20 mol%) provided the best platform with which to perform these reactions. Addition of a series of indole derivatives to a range of a,P-unsaturated ketones provided access to the adducts with excellent efficiency (56-99% yield 70-96% ee). The substrates adopted within these reactions is particularly noteworthy. For example, use of aryl ketones (R = Ph), significantly widens the scope of substrates accessible to iminium ion activation. Expansion of the scope of nucleophiles to thiols [213] and oximes [214] with similar high levels of selectivity suggests further discoveries will be made. [Pg.331]

Although 3-aminoquinazoline derivatives are normally prepared de novo from hydrazine starting materials, they can also be prepared by N-amination reactions. Thus, treatment of l-substituted-2,4(177,377)-quinazolinediones 32 with 0-aryl hydroxylamines under basic conditions gives 3-amino-l-substituted-2,4(177,377)-quinazolinediones 33 which are intermediates in the synthesis of 3-amino-2,4(l/7,3/7)-quinazolinedione antibacterial agents <20020PD230, 2005JHC669, 2006JME6435>. [Pg.126]

Hofmann, Curtius, and Schmidt reactions yield primary amines free of secondary or tertiary amines. The three reactions are closely related but differ in reaction conditions. They apply to alkyl, allyl, and aryl derivatives. See Section 23-12E. [Pg.1150]

Other nucleophiles than amines which have been employed in the reaction are malononitrile and cyanoacetic ester anions. Both of these anions undergo a preliminary reaction with the aryl halide to form the C-aryl derivatives before they attack the ir-allylpalladium intermediate, so that diarylated products are formed (equation 31).86 Phenylmalononitrile anion reacts with iodobenzene and butadiene to give the same product in 70% yield. [Pg.850]

There has been a summary of the use of insertion reactions of arynes into a-bonds to prepare nrt/io-disubs tituted arenes. A key to the success of these processes is the ability to generate benzyne under mild conditions by the reaction of readily available o-(trimethylsilyl)phenyl triflate with fluoride ions.61 Reaction of amines and their derivatives with benzynes generated in this way has been shown to be an efficient method for the production of N-arylated derivatives, as illustrated in Scheme 8. The method also works well in the O-arylation reactions of phenols and carboxylic acids 62... [Pg.185]

Copper diacetate-catalyzed arylation of heterocyclic amines such as piperidine, tetrahydroisoquinoline 76101 or 1,6-diazacyclodecane 77104 by aryllead triacetates gave only modest to moderately good yields of the iV-aryl derivatives (Equation (76) and (77)). The reactions with aliphatic amines lead to particularly poor yields of the derived anilines101 (Equations (78) and (79)), although the arylation of cyclooctylamine 78 with an electron-rich aryllead triacetate afforded the aniline derivative 79 in a moderately good yield (52%) (Equation (80)).1O5 1O5a... [Pg.407]

Intramolecular palladium-catalyzed cyclization reactions are commonly used to synthesize indazole derivatives . For example, A-Aryl-A-(<9-bromobenzyl)hydrazines 203 participate in a palladium-catalyzed intramolecular amination reaction to give 2-aryl-2//-indazoles 204 (Scheme 121) <20000L519>. [Pg.831]

Intramolecular palladium-catalyzed cyclization reactions have also been used to synthesize pyrazole derivatives. iV-Aryl-iV-(o-bromobenzyl)hydrazines 494 participated in a palladium-catalyzed intramolecular amination reaction to give 2-aryl-2//-indazoles 495 (Equation 101) <20000L519>. Palladium-catalyzed intramolecular C-N bond formation of iV-acetamino-2-(2-bromo)arylindolines 496, followed by hydrolysis and air oxidation in the presence of aluminium oxide, allowed the preparation of indolo[l,2-3]indazoles 498 via intermediate 497 (Scheme 58) <2002TL3577>. 3-Substituted pyrazoles have been prepared from the intramolecular cyclization of A -tosyl-iV-(l-aryl/ vinyl-1-propyn-3-yl)hydrazine and then exposme of the reaction mixture of the cyclization to potassium /i //-butoxide <1997SL959>. iV-Aryl-iV -(o-bromobenzyl)hydrazines 499 or [A -aryl-A -(t>-bromobenzyl)hydrazinato-A ]-triphenyl-phosphonium bromides 501 participated in a palladium-catalyzed intramolecular amination reaction to give 1-phenyl-l//-indazoles 500 (Scheme 59) <2001TL2937>. [Pg.72]

Nucleophilic attack of ammonia or of a primary or secondary amine on an O-alkyl thiocarboxylate (2) provides a formally straightforward approach to thioamides and a number of examples have been reported (equation l). - However, some limitations should be noted. Thus, there is a tendency of esters (2) to rearrange to their 5-alkyl isomers on heating (cf. Volume 6, Chapter 2.5) and these yield amides with amines rather than thioamides. Besides, excess primary amine will lead to amidine formation, or the tetrahedral intermediate of the substitution reaction may break down to an imidate rather than a thioamide (cf. Volume 6, Chapter 2.7). These unwanted side reactions are favoured in polar, protic solvents such as ethanol. In contrast, THF has proven to be particularly useful in the synthesis of tertiary thioamides according to equation (1). For improved reactivity in the preparation of V-aryl derivatives and milder reaction conditions, it is advantageous to employ the amine in the form of its Mg salt. ... [Pg.420]


See other pages where Aryl derivatives amination reactions is mentioned: [Pg.34]    [Pg.49]    [Pg.204]    [Pg.446]    [Pg.213]    [Pg.172]    [Pg.205]    [Pg.280]    [Pg.492]    [Pg.167]    [Pg.20]    [Pg.58]    [Pg.248]    [Pg.248]    [Pg.336]    [Pg.208]    [Pg.208]    [Pg.116]    [Pg.460]    [Pg.123]    [Pg.103]    [Pg.194]    [Pg.198]    [Pg.58]    [Pg.4763]    [Pg.562]    [Pg.248]    [Pg.72]    [Pg.119]    [Pg.122]    [Pg.877]    [Pg.66]    [Pg.164]   
See also in sourсe #XX -- [ Pg.1056 ]




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Amines derivatives

Aryl aminations

Aryl amines

Aryl amines, Reactions

Aryl derivatives

Aryl derivs

Arylation derivatives

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