Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9577727 | Chemical Physics Letters | 2005 | 6 Pages |
Abstract
The low-energy paths for the reaction of HO with C2H4 have been studied at the PMP2/aug-cc-PVQZ//MP2/cc-PVTZ level of theory. The rate constants for the production of C2H4OH, CH2CHOH + H and C2H3 + H2O calculated with variational RRKM theory indicated that below 500 K, the formation of C2H4OH (k1) via an OH â¯Â Ï complex with 1.9 kcal/mol binding energy is the major product channel exhibiting a negative-temperature dependence; between 800 and 1000 K, the formation of CH2CHOH + H (k2) and C2H3 + H2O (k3) becomes competitive; at T > 1000 K, k3 becomes dominant. k1 was found to be strongly affected by multiple reflections above the well of the OH â¯Â Ï complex. The predicted results are in close agreement with available experimental data.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
R.S. Zhu, J. Park, M.C. Lin,