Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Sila-Pummerer rearrangement 3-elimination

Indole synthesis. This Michael acceptor reacts with o-lithio-N-Boc-aniline. The product undergoes a sila-Pummerer rearrangement to induce ring closure. Indoles are obtained on elimination of the [PhSH] element. [Pg.71]

DMSO or other sulfoxides react with trimethylchlorosilanes (TCS) 14 or trimefhylsilyl bromide 16, via 789, to give the Sila-Pummerer product 1275. Rearrangement of 789 and further reaction with TCS 14 affords, with elimination of HMDSO 7 and via 1276 and 1277, methanesulfenyl chloride 1278, which is also accessible by chlorination of dimethyldisulfide, by treatment of DMSO with Me2SiCl2 48, with formation of silicon oil 56, or by reaction of DMSO with oxalyl chloride, whereupon CO and CO2 is evolved (cf also Section 8.2.2). On heating equimolar amounts of primary or secondary alcohols with DMSO and TCS 14 in benzene, formaldehyde acetals are formed in 76-96% yield [67]. Thus reaction of -butanol with DMSO and TCS 14 gives, via intermediate 1275 and the mixed acetal 1279, formaldehyde di-n-butyl acetal 1280 in 81% yield and methyl mercaptan (Scheme 8.26). Most importantly, use of DMSO-Dg furnishes acetals in which the 0,0 -methylene group is deuter-ated. Benzyl alcohol, however, affords, under these reaction conditions, 93% diben-zyl ether 1817 and no acetal [67]. [Pg.201]


See other pages where Sila-Pummerer rearrangement 3-elimination is mentioned: [Pg.6]    [Pg.368]    [Pg.413]    [Pg.220]    [Pg.204]    [Pg.204]   
See also in sourсe #XX -- [ Pg.204 ]




SEARCH



Elimination-rearrangement

Pummerer

Pummerer rearrangement

Sila elimination

Sila-Pummerer rearrangement

© 2024 chempedia.info