Photodetachment of electrons from large molecular systems: Cyclopentadienide and methylcyclopentadienide ions. An upper limit to the electron affinities of C5H5· and CH3C5H4·
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1680725
Reference44 articles.
1. Electron Affinities of O2, O3, NO, NO2, NO3 by Endothermic Charge Transfer
2. Electron Affinities of O2, O3, NO, NO2, NO3 by Endothermic Charge Transfer
3. Photodetachment Energies of Negative Ions by Ion Cyclotron Resonance Spectroscopy. Electron Affinities of Neutral Radicals
4. Photodetachment of Negative Ions Using a Continuously Tunable Laser and an Ion Cyclotron Resonance Spectrometer
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1. High-Level ab Initio Predictions for the Ionization Energy, Electron Affinity, and Heats of Formation of Cyclopentadienyl Radical, Cation, and Anion, C5H5/C5H5+/C5H5–;The Journal of Physical Chemistry A;2014-03-25
2. Gas phase low energy electron induced decomposition of the focused electron beam induced deposition (FEBID) precursor trimethyl (methylcyclopentadienyl) platinum(iv) (MeCpPtMe3);Physical Chemistry Chemical Physics;2012
3. The vibronic level structure of the cyclopentadienyl radical;The Journal of Chemical Physics;2008-08-28
4. Nonadiabatic effects in the photoelectron spectrum of the pyrazolide-d3 anion: Three-state interactions in the pyrazolyl-d3 radical;The Journal of Chemical Physics;2006-08-28
5. Mass Spectrometry of Free Radicals;Chemical Reviews;2002-08-07
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