Abstract: | The reaction of isobutene (IB) with its dimers (IB2) catalyzed by CF3SO3H yielded isobutene trimers (IB3) in high yield in nonpolar solvents at 0°C. The initial feed of isobutene, in the presence of equimolar IB2 or more, was selectively converted into IB3 without loss or accumulation of IB2. After complete consumption of the isobutene, however, the remaining IB2 rapidly dimerized to isobutene tetramers (IB4). 13C-NMR analysis of the products showed that the IB3 was formed via addition of the t-butyl cation (protonated isobutene to 2,4,4-trimethyl-1-pentene (an IB2 isomer); the trimer fraction was free from isomers arising from addition of the t-butyl cation to 2,4,4-trimethyl-2-pentene (another IB2 isomer) or addition of the IB2 cation to isobutene. The IB3 thus obtained was further oligomerized with CF3SO3H catalyst in nonpolar media in the range of 0 to ?25°C to give a mixture of IB5, IB6, and IB7 in high yield. With EtAlCl2 as catalyst, reaction of isobutene with IB2 and oligomerization of IB3 both resulted in products with a broad molecular weight distribution containing higher oligomers and complex hydrocarbons formed via cracking of the intermediate carbocations. |