Nascent rotational and vibrational product state distribution in the charge transfer reaction of N++CO→CO++N at near thermal energy
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.450379
Reference18 articles.
1. Single collision ion–molecule reactions at thermal energy: Rotational and vibrational distributions from N++CO→N+CO+
2. Laser‐induced fluorescence measurement of nascent vibrational and rotational product state distributions in the charge transfer of Ar++N2→Ar+N+2(v=0,1) at 0.2 eV
3. Nascent vibrational and rotational distributions from the charge transfer reaction Ar++CO → CO++Ar at near thermal energy
4. Product vibrational state distributions of thermal energy charge transfer reactions determined by laser‐induced fluorescence: N++CO→CO+(v=0–2)+N
5. The effects of collision energy and ion vibrational excitation on proton and charge transfer in H2++N2, CO, O2
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1. Gas temperature determination from rotational lines in non-equilibrium plasmas: a review;Plasma Sources Science and Technology;2014-04-07
2. 3 Optical studies of ion–molecule reactions;Annu. Rep. Prog. Chem., Sect. C: Phys. Chem.;2004
3. Electrostatic model of cooperative effects in hydrogen-bonded systems: cooperative effect of base and cation on the AH stretching1 vibrational frequency;Journal of Molecular Structure;1997-12
4. A theoretical study of charge-transfer reactions: potential surface and classical trajectory study of atomic nitrogen ion + carbon monoxide (N+ + CO .fwdarw. N + CO+);The Journal of Physical Chemistry;1993-11
5. Thermal energy reactions of N+2 (ν=1) with SF6, H2, D2, H, and D;The Journal of Chemical Physics;1991-11-15
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