Magnetic field effects and spin dynamics of radical reactions in solution

Citation
H. Hayashi et al., Magnetic field effects and spin dynamics of radical reactions in solution, B CHEM S J, 74(5), 2001, pp. 773-783
Citations number
34
Categorie Soggetti
Chemistry
Journal title
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN
ISSN journal
00092673 → ACNP
Volume
74
Issue
5
Year of publication
2001
Pages
773 - 783
Database
ISI
SICI code
0009-2673(200105)74:5<773:MFEASD>2.0.ZU;2-2
Abstract
A pulsed magnet which is useful for the research of chemical reactions has recently been constructed by our group. Here, the world record of the maxim um magnetic field (30 T) has been attained in this research area. An optica l detected X-band ESR apparatus has also been developed by our group. The w orld's best sensitivity and resolution have been realized in this apparatus . In this account, we review our recent results on new magnetic field effec ts and spin dynamics obtained with such novel methods as described above fo r radical reactions at room temperature in solution. In Section 1, typical mechanisms of MFEs on radical pairs such as the Deltag mechanism and the re laxation mechanism are explained as the introduction of this review. In Sec tion 2, the saturation of MFEs due to the Deltag mechanism observed for rad ical pairs generated from the photoreduction of 4-methoxybenzophenone with benzenethiol in fluid solutions under ultrahigh fields are described. In Se ction 3, the saturation and reversion of MFEs due to the relaxation mechani sm observed for radical pairs generated from the photoreduction of carbonyl and quinone compounds in micellar solutions under ultrahigh fields are rev iewed. In Section 4, the first observation of MFEs on the reactions of thre e-spin systems generated photochemically in solution are introduced. In Sec tion 5, we describe spin dynamics of radical pairs studied with our optical ly detected ESR apparatus for radical pairs generated from the photoreducti on of carbonyl and quinone compounds in micellar solutions.