Comparison of the cross sections for reaction of methyl iodide with potassium and rubidium
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.435797
Reference37 articles.
1. Translational Energy Dependence of the Reaction Cross Section for K+CH3I→ KI+CH3 from 0.1 to 1 eV (c.m.)
2. Translational Energy Dependence of the Reaction Cross Section for K+CH3I→ KI+CH3 from 0.1 to 1 eV (c.m.)
3. Molecular Beam Study of the K+CH3I Reaction: Energy Dependence of the Detailed Differential Reactive Cross Section
4. Molecular Beam Study of the K+CH3I Reaction: Energy Dependence of the Detailed Differential Reactive Cross Section
5. Optical Model Analysis of Nonreactive Collisions of Reactive Molecules: Scattering of K, Rb, and Cs from CCl4, CH3I, and SnCl4
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1. Influence of Translational Energy Upon Reactive Scattering Cross Section: Neutral-Neutral Collisions;Advances in Chemical Physics;2007-03-14
2. Theoretical study of the electron attachment dissociation of methyl halides and freon molecules: CF 3 Cl, CF 2 Cl 2 , CFCl 3;Journal of Fluorine Chemistry;2001-05
3. K+CH3I→KI+CH3 revisited: the total reaction cross section and its energy and orientation dependence. A case study of an intermolecular electron transfer;Physical Chemistry Chemical Physics;2000
4. Photoinduced charge-transfer dissociation in van der Waals complexes. V. Na⋯XCH3 (X=F, Cl, and Br);The Journal of Chemical Physics;1997-03-08
5. KBr angular and velocity distributions from a crossed molecular beam study between K and brute force oriented and nonoriented CH3Br molecules;The Journal of Physical Chemistry;1995-09
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