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Elimination methyl groups

Since straight chain alkanes rarely eliminate methyl groups (-CHj)... [Pg.132]

The 7, i5-unsaturated alcohol 99 is cyclized to 2-vinyl-5-phenyltetrahydro-furan (100) by exo cyclization in aqueous alcohol[124]. On the other hand, the dihydropyran 101 is formed by endo cyclization from a 7, (5-unsaturated alcohol substituted by two methyl groups at the i5-position. The direction of elimination of /3-hydrogen to give either enol ethers or allylic ethers can be controlled by using DMSO as a solvent and utilized in the synthesis of the tetronomycin precursor 102[125], The oxidation of the optically active 3-alkene-l,2-diol 103 affords the 2,5-dihydrofuran 104 in high ee. It should be noted that /3-OH is eliminated rather than /3-H at the end of the reac-tion[126]. [Pg.35]

The 7V-methylbenzo[( e]quinoline 426 was prepared by trapping the insertion product of an internal alkyne with a tertiary dimethylamine. One methyl group is eliminated. The dimethylaminonaphthalene-Pd complex 427 is an active catalyst and other Pd compounds are inactive[290a]. [Pg.186]

The least sterically hindered p hydrogen is removed by the base m Hofmann elim matron reactions Methyl groups are deprotonated m preference to methylene groups and methylene groups are deprotonated m preference to methmes The regioselectivity of Hofmann elimination is opposite to that predicted by the Zaitsev rule (Section 5 10) Elimination reactions of alkyltrimethylammonmm hydroxides are said to obey the Hofmann rule, they yield the less substituted alkene... [Pg.938]

Fig. 4. Synthesis of estrone (20) through elimination of unactivated 19-methyl group via intramolecular functionalization of C-19. -TsOH... Fig. 4. Synthesis of estrone (20) through elimination of unactivated 19-methyl group via intramolecular functionalization of C-19. -TsOH...
The same reactivity pattern is observed with i9-methy1 anilides in which a carhanion-stahili ing substituent is attached to the methyl group. For Z = trimethylsilyl or triphenylphosphonio, elimination occurs with cyclization. [Pg.87]

Interest in the synthesis of 19-norsteroids as orally active progestins prompted efforts to remove the C19 angular methyl substituent of readily available steroid precursors. Industrial applications include the direct conversion of androsta-l,4-diene-3,17-dione [897-06-3] (92) to estrone [53-16-7] (26) by thermolysis in mineral oil at about 500°C (136), and reductive elimination of the angular methyl group of the 17-ketal of the dione [2398-63-2] (93) with lithium biphenyl radical anion to form the 17-ketal of estrone [900-83-4] (94) (137). [Pg.429]

Direct Blue 218 had reported sales of 623 t valued at 4.4 million ia 1987. It is produced from Direct Blue 15 (76) by metallizing and elimination of methyl groups from the methoxide to form the copper complex. Direct Blue 15 (76) is prepared by coupling o-dianisidine [119-90-4] to two moles of H-acid (4-amiQO-5-hydroxy-2,7-naphthalenedisulfonic acid) under alkaline pH conditions. Other important direct blues iaclude Direct Blue 80 (74), (9-dianisidine coupled to two moles of R-acid (3-hydroxy-2,7-naphthalenedisulfonic acid [148-75-4]) followed by metallizing to form a bis copper complex, and Direct Blue 22 (77), an asymmetrical disazo dye, prepared by coupling o-dianisidine to Chicago acid [82-47-3] and 2-naphthol. Direct Blue 75 (78) is an example of a trisazo dye represented as metanilic acid — 1,6-Q.eve s acid — 1,6-Q.eve s acid — (alb) Ai-phenyl J-acid. [Pg.443]

The solvated phosphorane adds to the polarized carbonyl with the incipient C-21 methyl group pointing away from the bulk of the steroid nucleus. The newly formed carbon-carbon bond must then rotate in order for the tri-phenylphosphine group and oxygen atom to have the proper orientation for the elimination of triphenylphosphine oxide. This places the C-21 methyl in the CIS configuration. [Pg.131]

This table gives the displacements for the normal mode corresponding to the imaginary frequency in terms of redundant internal coordinates (several zero-valued coordinates have been eliminated). The most significant values in this list are for the dihedral angles D1 through D6. When we examine the standard orientation, we realize that such motion corresponds to a rotation of the methyl group. [Pg.74]

MCPBA, DMF, —63°, 100% yield.Hydrazones of aldols are cleaved without elimination under these conditions. " An axial a-methyl group on a cyclohexanone does not epimerize under these conditions. ... [Pg.351]

A meehanistie seheme that was proposed involves the sueeessive or synehronous elimination of a proton and a ehloride ion from the 5-methyl group and from the ehloroethynyl group attaehed to it, followed by addition of the nueleophile (NH3) to the intermediate bipolar earbene ion stabilized by eonjugation (Seheme 103). [Pg.49]

In a subsequent step, the insertion of CO between the metal and the adsorbed methyl group occurs, followed by hydrogenation and elimination of water. [Pg.128]

The methyl groups were then deuterium-substituted. Ethanolysis of (CD3)2CHBr gave a mixture of CD3CH = CD2 and (CD3)2CHOC2H5. The elimination pathway had hAd = 6.7, whereas the substitution pathway showed no measurable kie. Clearly, these observations imply nearly complete proton abstraction in the one transition state and the lack of C-H involvement in the other. [Pg.216]


See other pages where Elimination methyl groups is mentioned: [Pg.182]    [Pg.276]    [Pg.182]    [Pg.276]    [Pg.661]    [Pg.349]    [Pg.92]    [Pg.156]    [Pg.227]    [Pg.396]    [Pg.53]    [Pg.399]    [Pg.210]    [Pg.485]    [Pg.165]    [Pg.429]    [Pg.244]    [Pg.111]    [Pg.22]    [Pg.103]    [Pg.289]    [Pg.682]    [Pg.432]    [Pg.939]    [Pg.221]    [Pg.13]    [Pg.117]    [Pg.244]    [Pg.289]    [Pg.198]    [Pg.303]    [Pg.330]    [Pg.66]    [Pg.292]    [Pg.330]    [Pg.609]    [Pg.128]   
See also in sourсe #XX -- [ Pg.17 ]




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Elimination 1-methyl

Elimination groups

Methyl group

Methyl group elimination reactions

Methyl groups angular, elimination

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