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Amines reactions with substituted pyridines

Ab initio SCRF/MO methods have been applied to the hydrolysis and methanol-ysis of methanesulfonyl chloride (334). ° The aminolysis by aromatic amines of sulfonyl and acyl chlorides has been examined in terms of solvent parameters, the former being the more solvent-dependent process.Solvent effects on the reactions of dansyl chloride (335) with substituted pyridines in MeOH-MeCN were studied using two parameters of Taft s solvatochromatic correlation and four parameters of the Kirkwood-Onsager, Parker, Marcus and Hildebrand equations. MeCN solvent molecules accelerate charge separation of the reactants and stabilize the transition... [Pg.97]

The second-order rate constants (AVM sec ) are given in Table 7 for the reaction of substituted pyridines with 2,4,6-trinitrophenyl-O-ethyl-dithiocarbonate and of alicyclic secondary amines with 2,4-dinitro-phenyl-4-cyanobenzoate. Plot the extended Bronsted graphs and briefly comment on the results. [Pg.49]

Thus, a new type of Lewis acid, lanthanide triflates, is quite effective for the catalytic activation of imines, and has achieved imino Diels-Alder reactions of imines with dienes or alkenes. The unique reactivities of imines which work as both dienophiles and azadienes under certain conditions were also revealed. Three-component coupling reactions between aldehydes, amines, and dienes or alkenes were successfully carried out by using Ln(OTf)3 as catalysts to afford pyridine and quinoline derivatives in high yields. The triflates were stable and kept their activity even in the presence of water and amines. According to these reactions, many substituted pyridines and quinolines can be prepared directly from aldehydes, amines, and dienes or alkenes. A stepwise reaction mechanism in these reactions was suggested from the experimental results. [Pg.283]

When the reaction with propargyl alcohol is run in an amine solution at elevated temperature, the alkynylated product first formed is further transformed by a cyclization reaction with the pyridine nitrogen 3-piperidinoindolizine (35) is formed (36% yield) in piperidine at 80°C. Corresponding cyclization products result from the reaction with 1-bromoisoquinoline or 2-bromoquinoline with propargyl alcohol (80BCJ3273). Alkynylation (38) of 2-chloro-, 3-bromo-, and 4-iodopyrimi-dines, which are vicinally substituted by a cyano, carbamoyl, or ethoxy-carbonyl group, has been effected with phenylacetylene by heating the... [Pg.315]

Alexei Eugenivich Chichibabin (Kusemino, nr. Poltava, Russia, 17 March 1871 (O.S.)-Paris, 15 August 1945), assistant in the University of Moscow (1900) and professor (1909) in the Technical High-School there, published much work in organic chemistry, notably on tervalent carbon. The Chichibabin amination reaction (1914) involves the formation of 2-aminopyridine by heating pyridine with sodamide in toluene, and hydrolysis of the product with water. The Chichibabin pyridine synthesis involves the condensation of aldehydes, ketones, etc., with ammonia or amines to form substituted pyridines. ... [Pg.855]

A number of papers have been concerned with substitution reactions of Vitamin B12 model compounds. Kinetics of the substitution of the alkylaquo-l,3-bis(acetyl monoximeimino)propanato-cobalt ions (MH2O) by L are consistent with formation of an intermediate MH20,L only when L contains an aromatic group. Sjxl substitution reactions of the axial aquo-ligand in methyl aquo-cobaloxime by thiols, primary amines, and 4-substituted pyridines have been described. [Pg.370]

Benzenesulphonyl chloride reacts with primary and secondary, but not with tertiary, amines to yield substituted sulphonamides (for full discussion, see Section IV,100,3). The substituted sulphonamide formed from a primary amine dissolves in the alkaline medium, whilst that produced from a secondary amine is insoluble in alkali tertiary amines do not react. Upon acidifying the solution produced with a primary amine, the substituted sulphonamide is precipitated. The reactions form the basis of the Hinsberg procedure for the separation of amines see Section IV,100,(viii) for details. Feebly basic amines, such as o-nitroaniline, react slowly in the presence of allcali in such cases it is best to carry out the reaction in pyridine solution see Section IV,100,3. ... [Pg.1073]

These Br nsted-type plots often seem to be scatter diagrams until the points are collated into groups related by specific structural features. Thus, p-nitrophenyl acetate gives four separate, but parallel, lines for reactions with pyridines, anilines, imidazoles, and oxygen nucleophiles.Figure 7-4 shows such a plot for the reaction of trans-cmmm c anhydride with primary and secondary aliphatic amines to give substituted cinnamamides.All of the primary amines without substituents on the a carbon (R-CHi-NHi) fall on a line of slope 0.62 cyclopentylamine also lies on this line. If this line is characteristic of normal behavior, most of the deviations become qualitatively explicable. The line drawn through the secondary amines (slope 1.98) connects amines with the structure R-CHi-NH-CHi-R. The different steric requirements in the acylation reaction and in the model process... [Pg.350]

In addition to their reactions with amines, Zincke salts also combine with other nitrogen nucleophiles, providing various A -substituted pyridine derivatives. Pyridine A -oxides result from the reaction with hydroxylamine, as exemplified for the conversion of Zincke salt 38 to the A -oxide 39 Reactions of Zincke salts with hydrazine, meanwhile, lead... [Pg.361]

In spite of the potential complexity of the general problem, even when restricted to the reagent family of amines, the nucleophilicities of such series as meta- and pom-substituted pyridines and anilines appear to correlate very closely with the expected substituent effects and with the basicities. This has been verified in the following cases (i) The reaction of pyridines (R = H, m- andp-CHs) with 2-chloro-3-nitro-, 2-chloro-5-nitro-, and 4-chloro-3-nitro-pyridines. ... [Pg.305]

Heterocyclic amines are compounds that contain one or more nitrogen atoms as part of a ring. Saturated heterocyclic amines usually have the same chemistry as their open-chain analogs, but unsaturated heterocycles such as pyrrole, imidazole, pyridine, and pyrimidine are aromatic. All four are unusually stable, and all undergo aromatic substitution on reaction with electrophiles. Pyrrole is nonbasic because its nitrogen lone-pair electrons are part of the aromatic it system. Fused-ring heterocycles such as quinoline, isoquinoline, indole, and purine are also commonly found in biological molecules. [Pg.958]

Palladium-catalyzed aminations of aryl halides is now a well-documented process [86-88], Heo et al. showed that amino-substituted 2-pyridones 54 and 55 can be prepared in a two-step procedure via a microwave-assisted Buchwald-Hartwig amination reaction of 5- or 6-bromo-2-benzyloxypyri-dines 50 and 51 followed by a hydrogenolysis of the benzyl ether 52 and 53, as outlined in Fig. 9 [89]. The actual microwave-assisted Buchwald-Hartwig coupling was not performed directly at the 2-pyridone scaffold, but instead at the intermediate pyridine. Initially, the reaction was performed at 150 °C for 10 min with Pd2(dba)3 as the palladium source, which provided both the desired amino-pyridines (65% yield) as well as the debrominated pyridine. After improving the conditions, the best temperature and time to use proved... [Pg.22]

Nucleophilic substitution occurs at C-2, and to a lesser extent C-4, as might be predicted from similar reactions with pyridine. Chichibabin amination occurs rather more readily than with pyridine, giving 2-aminoquinoline. A typical hydride abstraction process occurs when qninoline is heated with sodinm... [Pg.441]

Technetium dissolves in dilute or concentrated nitric acid to form nitrate, Tc(N03)2. Reaction with concentrated sulfuric acid yields the sulfate TCSO4. Technetium is oxidized by hydrogen peroxide in alkaline solution to form soluble pertechnetate, Tc04 anion. Such pertechnatate anion forms complexes with tertiary or quarternary amines, pyridine and its methyl-substituted derivatives. [Pg.914]

Reaction of 4-chloro-6-fluoropyrido[3,4- pyrimidine 59 with [3-methyl-4-(pyridin-3-yloxy)phenyl]amine 60, followed by coupling the formed amine 61 with (3-azabicyclo[3.1.0]hex-6-yl)carbamic acid fi r7-butyl ester, afforded the substituted derivative 62 <2002EPP1249451>. Compound 59 was also reacted with 3-bromoaniline to give the 4-anilino derivative 63 that upon treatment with either methyl- or dimethylamine gave the corresponding 4,6-diamino derivatives 64 (Scheme 2) <1997W09726259, 1995W09519774>. [Pg.769]


See other pages where Amines reactions with substituted pyridines is mentioned: [Pg.134]    [Pg.538]    [Pg.538]    [Pg.61]    [Pg.107]    [Pg.134]    [Pg.86]    [Pg.269]    [Pg.75]    [Pg.289]    [Pg.330]    [Pg.995]    [Pg.233]    [Pg.195]    [Pg.84]    [Pg.473]    [Pg.51]    [Pg.473]    [Pg.123]    [Pg.209]    [Pg.329]    [Pg.176]    [Pg.653]    [Pg.21]    [Pg.293]    [Pg.167]    [Pg.168]    [Pg.240]    [Pg.304]    [Pg.467]    [Pg.306]    [Pg.271]   
See also in sourсe #XX -- [ Pg.1151 ]

See also in sourсe #XX -- [ Pg.1151 ]




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7-Substituted pyridines

Amine substitution

Amines, substituted

Pyridin-2-amine

Pyridination reaction

Pyridine with

Pyridine, reactions

Pyridines amination

Pyridines substitution

Reaction with amines

Reactions, with pyridine

Substituted reaction with

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