Kinetics of reaction of triethylaluminium with oct-1-ene in diphenyl ether and thermodynamic parameters for the stability of the triethylaluminium–diphenyl ether complex
Abstract
Parameters for the equilibrium: ½Et6Al2+ Ph2O [graphic omitted] Et3Al,OPh2 have been estimated by the n.m.r. chemical shift method: ΔH4°=–16·3 ± 1·3 KJ mol–1 and ΔS4⊖=–42·7 ± 1·7 J mol–1 K–1(molar scale). The complex does not participate in the reaction with oct-1-ene. The retarded reaction in the presence of Ph2O proceeds from the reduced concentration of the reactive, monomeric Et3Al. The rate coefficient for the rate-controlling step Et3Al + C8H16 [graphic omitted] Et2Al(Decyl) is the same in Ph2O and hydrocarbon solutions. If Smith's values of K3 for Et6Al2⇌ 2Et3Al are used, A2= 104·7 ± 0·1| mol–1 s–1, E2= 63·5 ± 1·2 kJ mol–1. An error in previous calculations of k2 for hydrocarbon solutions is corrected.
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