Rates have been determined for the transfer of vibrational energy between DF(v=2), DF(v=1), and CO2 using a laser-induced fluorescence technique. DF, in DF–CO2 gas mixtures, was excited to both the v=1 and v=2 vibrational levels by absorption of radiation from a pulsed DF laser operating simultaneously on v (1–0) and v (2–1) transitions. By monitoring fluorescence intensity at 1.7, 3.5, and 4.4 μ, the temporal behavior of DF(v=2), DF(v=1), and CO2 (001) populations was followed. A computer program was used to solve the differential rate equations and a ’’best fit’’ with experimental data determined the rate parameters. Rate constants obtained in this manner from the fluorescence data are k=5.1×105 sec−1⋅torr−1 for the DF(v=2) →CO2 transfer and k=1.5×104 sec−1⋅torr−1 for CO2 (001) deactivation by DF.
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Hinchen et al. (1975) studied this question.
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