Reactions of CF3 radicals with aromatics. Part 4.—Hydrogen abstraction from benzene at high temperatures and the bond dissociation energy D(C6H5—H)
Abstract
The reactions of CF3 radicals with benzene in the range 100–400°C were studied using the photolysis of hexafluoroacetone as a source of radicals. The addition of CF3 radicals to the benzene ring becomes reversible above ∼140°C. Below 140°C, pesudo H-abstraction occurs via the reactions CF3+ C6H6→CF3C6H6, CF3+ CF3C6H6→CF3H + C6H5CF3, but at higher temperatures, genuine H-abstraction by reaction (3) occurs CF3+ C6H6→CF3H + C6H5(3), and we obtain log k3(cm3 mol–1 s–1)=(11.31±0.28)–(9110±760)/θ, where θ= 2.303 RT cal mol–1. Combination of E3 and published data on E–3, (for the reverse of reaction (3)), gives ΔH°3 from which ΔH°f(C6H5)= 77.9±2.0, D(C6H5–H)= 110.2±2.0 kcal mol–1, both at 298 K. These values are compared with published data and the following are recommended: ΔH°f(C6H5)= 77.7±2.0 and D(C6H5—H)= 110.0±2.0, both in kcal mol–1.