ELIMINATION KINETICS AND MECHANISMS FOR SEVERAL 2-ALKOXYACETIC ACIDS IN THE GAS-PHASE

Citation
G. Chuchani et al., ELIMINATION KINETICS AND MECHANISMS FOR SEVERAL 2-ALKOXYACETIC ACIDS IN THE GAS-PHASE, Journal of physical organic chemistry, 9(12), 1996, pp. 787-794
Citations number
23
Categorie Soggetti
Chemistry Physical","Chemistry Inorganic & Nuclear
ISSN journal
08943230
Volume
9
Issue
12
Year of publication
1996
Pages
787 - 794
Database
ISI
SICI code
0894-3230(1996)9:12<787:EKAMFS>2.0.ZU;2-V
Abstract
The kinetics of the gas-phase elimination of three 2-alkoxyacetic acid s were investigated in a static system, seasoned with allyl bromide, a nd in the presence of the free chain radical inhibitor cyclohexene. Th e working temperature and pressure range were 350.4-410.8 degrees C an d 57-261.5 Torr, respectively. The reactions proved to be homogeneous and unimolecular and to follow a first-order rate law. The temperature dependence of the rate coefficients is given by the following equatio ns: for 2-methoxyacetic acid, log k(1) (s(-1))=(12.10+/-0.22)-(19.3+/- 2.8) kJ mol(-1) (2.303RT)(-1); for 2-ethoxyacetic acid, log k(1) (s(-1 ))=(12.76+/-0.29)-(199.6+/-3.7) kJ mol(-1) (2.303RT)(-1); and for 2-is opropoxyacetic acid, log k(1) (s(-1))=(12.40+/-0.32)-(193.7+/-3.9) kJ mol(-1) (2.303RT)(-1). The alkyl group R in ROCH(2)COOH does not seems to exert a significant effect on the rates. It is postulated that the predominant mechanism for the decomposition of the alkoxy acids invol ves a five-membered cyclic transition state, where the elimination of the RO substituents is assisted by the acidic proton of the COOH group .