TIME-RESOLVED STUDIES OF THE KINETICS OF THE REACTIONS OF CHO WITH HIAND HBR - THERMOCHEMISTRY OF THE CHO RADICAL AND THE C-H BOND STRENGTHS IN CH2O AND CHO

Citation
R. Becerra et al., TIME-RESOLVED STUDIES OF THE KINETICS OF THE REACTIONS OF CHO WITH HIAND HBR - THERMOCHEMISTRY OF THE CHO RADICAL AND THE C-H BOND STRENGTHS IN CH2O AND CHO, The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory, 101(23), 1997, pp. 4185-4190
Citations number
39
Categorie Soggetti
Chemistry Physical
ISSN journal
10895639
Volume
101
Issue
23
Year of publication
1997
Pages
4185 - 4190
Database
ISI
SICI code
1089-5639(1997)101:23<4185:TSOTKO>2.0.ZU;2-3
Abstract
Time-resolved studies of formyl radical, CHO, generated by laser flash photolysis of acetaldehyde, have been carried out to obtain rate cons tants for its bimolecular reactions with HI and HBr. Each reaction was studied in the gas-phase at five different temperatures in the range 293-540 K. The pressure-independent rate constants gave the following Arrhenius equations: for CHO + HI, log(k(2)/cm(3) molecule(-1) s(-1)) +/- 0.01) - (0.83 +/- 0.06 kJ mol(-1))/ RT In 10, for CHO + HBr, log(k /cm(3) molecule(-1) s(-1)) = (-12.59 +/- 0.06) - (0.13 +/- 0.44 kJ mol (-1))/ RT In 10. The Arrhenius parameters are consistent with those fo r reactions of other free radicals with HI and HBr and support the ide a of intermediate complexes in these processes. Combination with the k nown kinetic data on the reverse reactions leads to the thermodynamic estimate for Delta H-f degrees(CHO) = 44.29 +/- 0.43 kJ mol(-1) (third law method, 298 K value). Second law values are in reasonable agreeme nt. This value corresponds to the bond dissociation energies D(H-CHO) = 370.86 +/- 0.28 kJ mol(-1), and D(H-CO) = 63.18 +/- 0.46 kJ mol(-1). These values are in close agreement with several previous determinati ons although more precise. A small unresolved discrepancy exists with the most recent value for the photodissociation threshold for CH2O.