4.1 Article

Theoretical Study of the Mechanism for the Gas-Phase Pyrolysis Kinetics of 2-Methylbenzyl Chloride

Journal

INTERNATIONAL JOURNAL OF CHEMICAL KINETICS
Volume 43, Issue 10, Pages 537-546

Publisher

WILEY
DOI: 10.1002/kin.20571

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Funding

  1. Consejo de Desarrollo Cientifico y Humanistico (C.D.C.H.) [PG-03-00-6499-2006]

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The study of the kinetics and mechanism of dehydrochlorination reaction of 2-methyl benzyl chloride in the gas phase was carried out by means of electronic structure calculations using ab initio Moller-Plesset MP2/6-31G(d, p), and Density Functional Theory (DFT) methods: B3LYP/6-31G(d, p), B3LYP/6-31++ G(d, p), MPW1PW91/6-31G(d, p), MPW1PW91/6-31++ G(d, p)], PBE/6-31G(d, p), PBE/6-31++ G(d, p). Investigated reaction pathways comprise: Mechanism I, a concerted reaction through a six-centered cyclic transition state (TS) geometry; Mechanism II, a 1,3-chlorine shift followed by beta-elimination and Mechanism III, a single-step elimination with simultaneous HCl and benzocyclobutene formation through a bicyclic type of TS. Calculated parameters ruled out Mechanism III and suggest the elimination reaction may occur by either unimolecular Mechanism I or Mechanism II. However, the TS of the former is 20 kJ/mole more stable than the TS of the latter. Consequently, the Mechanism I seem to be more probable to occur. The rate-determining process is the breaking of C-Cl bond. The involvement of p-electrons of the aromatic system was demonstrated by NBO charges and bond order calculations. The reaction is moderately polar in nature. (C) 2011 Wiley Periodicals, Inc. Int J Chem Kinet 43: 537-546, 2011

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