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Isoquinoline, bromination

Figure 2.1 Relationship between rate of reaction, Rp, and initiator concentration [I], for isoquinoline-bromine complex in methyl methacrylate (J. W. Nicholson, unpublished results, 1977)... Figure 2.1 Relationship between rate of reaction, Rp, and initiator concentration [I], for isoquinoline-bromine complex in methyl methacrylate (J. W. Nicholson, unpublished results, 1977)...
Ha.loisoquinolines, The Sandmeyer reaction is commonly used to prepare chloroisoquinolines from the amino compound. The corresponding hydroxy compounds are also used by treatment with chlorides of phosphoms. The addition of bromine to a slurry of isoquinoline hydrochloride in nitrobenzene gives a 70—80% yield of 4-bromoisoquinoline [1532-97-4J. Heating 1-chloroisoquinoline [19493-44-8] with sodium iodide andhydriodic acid gives 1-iodoisoquinoline [19658-77-6] (179). [Pg.398]

Isoquinoline-l,3-dione, 5,6,7,8-tetrahydro-synthesis, 2, 408 Isoquinoline hydrobromide bromination, 2, 49 Isoquinolines adducts... [Pg.680]

Although, in most cases, iodine is a fairly inert halogen (in contrast to bromine) and does not normally react with the substances that have been chromatographed there are, nevertheless, examples where chemical changes have been observed. Oxidations can evidently take place (e.g. aromatic hydrocarbons and isoquinoline alkaloids [252,253]) and additions and substitutions have also been observed. Pale zones then appear on a brown background. [Pg.46]

It is difficult to treat the effect of a heteroatom on the localization energies of aromatic systems, but Brown has derived molecular orbital parameters from which he has shown that the rates of attack of the phenyl radical at the three positions of pyridine relatively to benzene agree within 10% with the experimental results. He and his co-workers have shown that the formation of 1-bromoisoquinoline on free-radical bromination of isoquinoline is in agreement with predictions from localization energies for physically reasonable values of the Coulomb parameters, but the observed orientation of the phcnylation of quinoline cannot be correlated with localization ener-... [Pg.176]

Isoquinoline 2-oxide was converted by bromine in acetic anhydride in the presence of sodium acetate into the 4-bromo 2-oxide, presumably via an addition-elimination process (84MI2). Metallic derivatives have been used occasionally to prepare bromoisoquinolines, as in the formaton of 79, a process accompanied by ring-opening [87JCS(PI)1865]. [Pg.297]

Thieno[4,5-c]isoquinoline formed the 2,3-dibromo product in 60% yield, whereas the [3,4-c] isomer decomposed under the same conditions (89CS309). Thieno[3,2-/]quinoline was brominated in 57% yield at C-2 [70JCS(C)2334]. [Pg.313]

Previously published methods for electrophilic bromination of isoquinoline"" lead to mixtures of isomers only separable with difficulty, use expensive additives or large excesses of reactants, or involve multistep procedures. [Pg.52]

The bromine atom of 4-aryl-2-(4-bromobutyl)-2,3,5,6,7,8-hexahydro-177- ancj -perhydropyrido[l,2-c]pyrimidine-l,3-diones was displaced with 4-substituted piperazines <2002FES959, 2004APH139, 2004PHA99>. Heating 3-hydroxymethyl derivatives of epimeric 6-methyl-l,3,4,6,7,llb-hexahydro-277-pyrimido[6,l-,2]isoquinolin-2-ones 152 resulted in the formation of the 3-unsubstituted derivatives 153 by loss of CH20 (Equation 26) <1997LA1165>. [Pg.105]

The medicinal importance of 2-aryltryptamines led Chu and co-workers to develop an efficient route to these compounds (130) via a Pd-catalyzed cross-coupling of protected 2-bromotryptamines 128 with arylboronic acids 129 [137]. Several Suzuki conditions were explored and only a partial listing of the arylboronic acids is shown here. In addition, boronic acids derived from naphthalene, isoquinoline, and indole were successfully coupled with 128. The C-2 bromination of the protected tryptamines was conveniently performed using pyridinium hydrobromide perbromide (70-100%). 2-Phenyl-5-(and 7-)azaindoles have been prepared via a Suzuki coupling of the corresponding 2-iodoazaindoles [19]. [Pg.101]

Isoquinoline, like quinoline, is protonated and alkylated at the nitrogen atom, but electrophilic substitution in the benzene ring is also easily achieved (Scheme 3.14). Sulfonation with oleum gives mainly the 5-sulfonic acid, but fuming nitric acid and concentrated sulfuric acid at 0 C produce a 1 1 mixture of 5- and 8-nitroisoquinolines. Bromination in the presence of aluminium trichloride at 75 °C gives a 78% yield of 5-bromoisoquinoline. [Pg.51]

In a reinvestigation of earlier work (33LA(505)103) by Diels and Alder, Acheson et al. (60JCS1691) established that the stable isomer obtained by addition of two moles of dimethyl acetylenedicarboxylate to one of pyridine was the 4/7-quinolizine (96) and that this with bromine was oxidized to a quinolizinium salt (97 Scheme 65). 4iT-Quinolizines obtained from isoquinoline (62JCS748) and phenanthridine (63JCS3888) were similarly aromatized to afford benzo[a]quinolizinium (98) and dibenzo[a,c]quinolizinium ions (99) respectively. [Pg.547]

Electrophilic aromatic substitutions Quinoline and isoquinoline undergo electrophilic aromatic substitution on the benzene ring, because a benzene ring is more reactive than a pyridine ring towards such reaction. Substitution generally occurs at C-5 and C-8, e.g. bromination of quinoline and isoquinoline. [Pg.167]

Quinoline 1-oxide gives a 4-bromo derivative (Br2-H20,100°C). Isoquinoline 2-oxide is brominated in the 4-position by the mechanism of Scheme 13. [Pg.192]

Nitrosation of 2-amino-4//-pyrimido[2,l-u]isoquinolin-4-ones (151, R1 = H) in acetic acid with sodium nitrite at 70°C gave 2-amino-3-nitroso derivatives (151, R1 = NO) (73GEP2261009). Bromination of 2-methyl-4//-pyrimido[2,l- ]isoquinolin-4-one (32 = Me) with N-bromosuccin-imide in boiling chloroform for 1 h yielded 3-bromo derivative 152 in 96% yield (80KGS1656). [Pg.210]


See other pages where Isoquinoline, bromination is mentioned: [Pg.856]    [Pg.912]    [Pg.49]    [Pg.856]    [Pg.912]    [Pg.49]    [Pg.477]    [Pg.856]    [Pg.912]    [Pg.856]    [Pg.912]    [Pg.856]    [Pg.912]    [Pg.49]    [Pg.856]    [Pg.912]    [Pg.49]    [Pg.477]    [Pg.856]    [Pg.912]    [Pg.856]    [Pg.912]    [Pg.396]    [Pg.158]    [Pg.296]    [Pg.328]    [Pg.134]    [Pg.139]    [Pg.149]    [Pg.663]    [Pg.663]    [Pg.118]    [Pg.58]    [Pg.333]    [Pg.320]    [Pg.322]    [Pg.569]    [Pg.97]    [Pg.173]   
See also in sourсe #XX -- [ Pg.50 ]

See also in sourсe #XX -- [ Pg.50 ]




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Isoquinolines bromination

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