Photodissociation of (N2)+n clusters (2≤n≤7): Branching ratios for formation of N+2 and N+4, and N+2 fragment vibrational excitation
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.465591
Reference31 articles.
1. A determination of the stabilities of N+2(N2)n and O+2(N2)n with n=1–11 from measurements of the gas‐phase ion equilibria
2. Excited state N2+(B̃) fragments from the photodissociation of N4+ at 270–290 nm
3. Energy disposal in photodissociation from magic angle measurements with a crossed high‐energy ion beam and laser beam: Photodissociation dynamics of the (N2)+2 cluster in the 458–514 nm range
4. Metastable, collision-induced and laser-induced decomposition of Ar m N + 2n (m= 0, 1) cluster ions in the gas phase
5. Photodissociation of Arn−mN+2m clusters (n=2 or 3, m=0−n)
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1. Hydrogen Bond and π-π Stacking Interaction: Stabilization Mechanism of Two Metal Cyclo-N5–-Containing Energetic Materials;ACS Omega;2022-02-18
2. Confirmation of the “long-lived” tetra-nitrogen (N4) molecule using neutralization-reionization mass spectrometry and ab initio calculations;The Journal of Chemical Physics;2004-06-08
3. Photodissociation dynamics of N4+ in the 300–670 nm range;The Journal of Chemical Physics;1999-12
4. Potential Energy Function and Vibrational States of the Electronic Ground State of N4+;The Journal of Physical Chemistry A;1999-03-04
5. Photofragmentation dynamics of the (N2O)2+ and (N2O)3+ clusters: fragment N2O+ A ← X spectra;Chemical Physics;1998-12
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