Intramolecular Stabilization of the Phosphine Radical Cation by the Second Phosphorus Atom during the Photooxidation of Diphosphines: 31P NMR Spectroscopic Analysis
Author:
Affiliation:
1. Faculty of Contemporary Human Life Science, Tezukayama University
2. Department of Chemistry, Nara University of Education
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
http://www.journal.csj.jp/doi/pdf/10.1246/cl.141027
Reference16 articles.
1. Reaction of a cation radical generated from trivalent phosphorus compound through single-electron transfer to arenediazonium salt
2. Dichotomy in the Reactivity of Trivalent Phosphorus Compounds Z 3 P (Z = Ph, n Bu, OR) Observed in the Photoreaction with a Ruthenium Complex
3. Ion Cyclotron Resonance Mass Spectrometric Study on the Gas-Phase Reaction of Triarylphosphine Radical Cations
4. Atmosphere-controlled Dual Reactivity of Triarylphosphine in the Photoexcited State: P–C Bond Cleavage vs. Electron Transfer
5. Dramatic Effect of Atmosphere on Product Distribution from Steady-State Photolysis of Triarylphosphines
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1. Phosphine/Photoredox Catalyzed Anti-Markovnikov Hydroamination of Olefins with Primary Sulfonamides via α-Scission from Phosphoranyl Radicals;Journal of the American Chemical Society;2021-10-21
2. 31 P NMR spectroscopic analysis on photooxidation of 1,n‐bis(diphenylphosphino)alkanes with the aid of DFT calculations;Journal of Physical Organic Chemistry;2020-02-07
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