Issue |
J. Chim. Phys.
Volume 71, 1974
|
|
---|---|---|
Page(s) | 1053 - 1058 | |
DOI | https://doi.org/10.1051/jcp/1974711053 | |
Published online | 28 May 2017 |
Transferts d’énergie vibration-vibration et vibration-translation dans NO Χ2Π (v” = 2 et 1), par spectroscopie cinétique nanoseconde
DRA/SRIRMa, BP N° 2, 91190 Gif-sur-Yvette, France.
La spectroscopie cinétique nanoseconde en absorption a permis de mesurer directement les constantes de vitesse des transferts d’énergie.
1) ΝOΧ2Π(V” = 2) + ΝΟΧ2Π(v” = 0) → 2 ΝΟΧ2Π(v” = 1)
[math]= (2,7 ± 0,4).10–12 cm3.molécule–1.s–1
2) ΝOΧ2Π(v” = 1) + NΟΧ2Π(v” = 0) → 2 ΝΟΧ2Π (υ” = 0) + ΔΕ
[math] = (5,7 ± 0,8). 10–14 cm3.molécule–1.s–1
3) ΝOΧ2Π (v” = 1) + He → ΝΟΧ2Π(v” = 0) + ΔΕ
[math] = (1,7 ± 0,3).10–15 cm3.molécule–1.s–1
Abstract
Using nanosecond kinetic absorption spectroscopy we have measured directly the following rate constants for energy transfert between vibrational levels.
1) ΝOΧ2Π(V” = 2) + ΝΟΧ2Π(v” = 0) → 2 ΝΟΧ2Π(v” = 1)
[math]= (2,7 ± 0,4).10–12 cm3.molécule–1.s–1
2) ΝOΧ2Π(v” = 1) + NΟΧ2Π(v” = 0) → 2 ΝΟΧ2Π (υ” = 0) + ΔΕ
[math] = (5,7 ± 0,8). 10–14 cm3.molécule–1.s–1
3) ΝOΧ2Π (v” = 1) + He → ΝΟΧ2Π(v” = 0) + ΔΕ
[math] = (1,7 ± 0,3).10–15 cm3.molécule–1.s–1
© Paris : Société de Chimie Physique, 1974