Oxidation-isomerization of an olefin to allylic alcohol using titania-silica and a base co-catalyst

Citation
C. Beck et al., Oxidation-isomerization of an olefin to allylic alcohol using titania-silica and a base co-catalyst, J CATALYSIS, 195(1), 2000, pp. 79-87
Citations number
51
Categorie Soggetti
Physical Chemistry/Chemical Physics","Chemical Engineering
Journal title
JOURNAL OF CATALYSIS
ISSN journal
00219517 → ACNP
Volume
195
Issue
1
Year of publication
2000
Pages
79 - 87
Database
ISI
SICI code
0021-9517(20001001)195:1<79:OOAOTA>2.0.ZU;2-7
Abstract
The potential of a two-step, one-pot synthesis of alpha,beta-unsaturated al cohols from olefins is illustrated on the example of 4-hydroxy-isophorone u sing titania-silica aerogels and basic co-catalysts. Kinetic analysis of th e complex reaction network revealed that titania-silica is efficient in the epoxidation of beta-isophorone (3,5,5-trimethyl-3-cyclohexen-1-one) with T BHP at 353 K, whereas the acid/base-catalyzed in situ rearrangement to 4-hy droxy-isophorone (4-hydroxy-3,5,5-trimethyl-cyclohex-2-enone) is slow. Addi tion of solid bases such as CaO, Na2CO3, and KF/CaF2 remarkably accelerated the rearrangement and up to 77.5% selectivity at 83% conversion was achiev ed in 3 h. Stronger bases (K2CO3, BaO, Mg-Al-O-Bu-t, guanidine bases) inhib ited the epoxidation reaction due to deactivation of the isolated Ti sites, and favored isomerization of beta-isophorone to alpha-isophorone. Hydropho bization of titaniasilica by covalently bound surface phenyl groups greatly suppressed oligomerization and isomerization of beta-isophorone but did no t improve the selectivity to 4-hydroxy-isophorone. (C) 2000 Academic Press.