Anisotropy Measurements from the Near-Threshold Photodissociation of the N2–NO Complex
Author:
Affiliation:
1. Department of Chemistry and Biochemistry, Creighton University, 2500 California Plaza, Omaha, Nebraska 68178, United States
Funder
Nebraska Space Grant Consortium
Betty and Donald J. Baumann Family Fund for Research and Outreach
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.jpca.1c10514
Reference31 articles.
1. Single-photon laser-induced fluorescence detection of nitric oxide at sub-parts-per-trillion mixing ratios
2. The electronic quenching rates of NO(A, v′=0–2)
3. Stereodynamic Control of Collision-Induced Nonadiabatic Dynamics of NO (A2Σ+) with H2, N2, and CO: Intermolecular Interactions Drive Collision Outcomes
4. The Ã←X̃(1+1)REMPI spectrum and high-level ab initio calculations of the complex between NO and N2
5. Pair-correlated stereodynamics for diatom-diatom rotational energy transfer: NO(A2Σ+) + N2
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1. Differential Cross Sections for Pair-Correlated Rotational Energy Transfer in NO(A2Σ+) + N2, CO, and O2: Signatures of Quenching Dynamics;The Journal of Physical Chemistry A;2023-07-23
2. Correlated Product Distributions in the Photodissociation of à State NO–CH4 and NO–N2 van der Waals Complexes;The Journal of Physical Chemistry A;2022-10-25
3. NO (A) Rotational State Distributions from Photodissociation of the N2-NO Complex;The Journal of Physical Chemistry A;2022-08-22
4. Reactive quenching of NO (A2Σ+) with H2O leads to HONO: a theoretical analysis of the reactive and nonreactive electronic quenching mechanisms;Physical Chemistry Chemical Physics;2022
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