Chloroform Anion Fragmentation in Liquid Methylcyclohexane: t-0.6 Simulation of the Geminate Ion Kinetics
Author:
Affiliation:
1. Laboratory for Physical Chemistry, ETH Zürich, Switzerland
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp984760w
Reference16 articles.
1. Geminate-ion kinetics with competing ion fragmentation in nonpolar liquids with halocarbons
2. The Radical Cation of Methylcyclohexane
3. A Precursor to the Solvent Radical Cation MCH+: Pulse Radiolysis of Liquid Methylcyclohexane (MCH) at 143 K
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1. Pushing the limits of the electrochemical window with pulse radiolysis in chloroform;Physical Chemistry Chemical Physics;2020
2. Spin-Correlated Radical Ion Pairs Generated in Liquid Haloalkanes Using High-Energy Radiation;The Journal of Physical Chemistry B;2018-08-22
3. Geminate Ion Kinetics for Hexa-, Penta- and Tetrachloroethane in Liquid Methylcyclohexane (MCH): Effect of the Anion Lifetimes;The Journal of Physical Chemistry A;2003-12-01
4. Anion of Tetrachloroethane (Tetra): Fragmentation and Geminate Ion Kinetics in Liquid Methylcyclohexane (MCH);The Journal of Physical Chemistry A;2003-12-01
5. Drastic differences in geminate ion kinetics, dependent on anion lifetimes;Radiation Physics and Chemistry;2001-01
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