Large magnetic field effect on the radical pair generated from the photo-induced electron transfer from skatole to 2,4,6-triphenyl pyrilium tetrafluoroborate in aqueous SDS micellar medium
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference19 articles.
1. Photosensitization by reversible electron transfer: theories, experimental evidence, and examples
2. Photoelectron-transfer catalysis: its connections with thermal and electrochemical analogs
3. Electron-transfer-induced chain reactions and catalysis. Building bridges between inorganic, organic, and organometallic substrates
4. A laser flash photolysis study of magnetic field effects in photoinduced electron transfer between Ru (bpy)2+3 and N,N′-dimethylviologen in micellar solutions
5. 2,4,6-Triphenylpyrylium Tetrafluoroborate as an Electron-Transfer Photosensitizer
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1. Studies on coherent and incoherent spin dynamics that control the magnetic field effect on photogenerated radical pairs;Molecular Physics;2019-07-24
2. Dynamics of flavin containing radical pairs in SDS micellar media probed by static and pulse magnetic field effect and pulse ADMR;Molecular Physics;2019-02-20
3. Gigantic Magnetic Field Effect on the Long-Lived Intermolecular Charge-Separated State Created at the Nonionic Bilayer Membrane;The Journal of Physical Chemistry B;2018-11-16
4. Specific spin-correlation dependent magnetic field effects on radical pairs photo-generated by electron transfer from biphenyl to phenyl-pyrilium salts in micelle;Chemical Physics Letters;2009-09
5. Influence of molecular shape on magnetic field effect on photo-induced geminate radical pair in SDS micellar medium;Research on Chemical Intermediates;2005-01
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