Electron spin resonance and electron nuclear double resonance spectroscopy: Application to the study of trapped electrons
Journal Article
·
· Appl. Spectrosc.; (United States)
V band electron spin resonance-ENDOR spectroscopy has been applied to the study of ''trapped'' electrons in single crystals of polyhydroxy and carbohydrate compounds X-irradiated at low temperature. Evidence is presented from ENDOR measurements of hydroxy proton couplings that electrons are stabilized at intermolecular sites. The electron can be stabilized in the dipole fields of two or three hydroxy groups.
- Research Organization:
- Biophysics Department, Roswell Park Memorial Institute, Buffalo, New York 14263
- OSTI ID:
- 5347297
- Journal Information:
- Appl. Spectrosc.; (United States), Journal Name: Appl. Spectrosc.; (United States) Vol. 34:3; ISSN APSPA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360404* -- Materials-- Polymers & Plastics-- Physical Properties-- (-1987)
CARBOHYDRATES
CHEMICAL RADIATION EFFECTS
CHEMISTRY
CRYSTALS
DOUBLE RESONANCE METHODS
ELECTROMAGNETIC RADIATION
ELECTRONS
ELEMENTARY PARTICLES
ENDOR
FERMIONS
HYDROXY COMPOUNDS
IONIZING RADIATIONS
IRRADIATION
LEPTONS
LOW TEMPERATURE
MAGNETIC RESONANCE
MONOCRYSTALS
ORGANIC COMPOUNDS
RADIATION CHEMISTRY
RADIATION EFFECTS
RADIATIONS
RESONANCE
SPECTRA
TRAPPED ELECTRONS
X RADIATION
360404* -- Materials-- Polymers & Plastics-- Physical Properties-- (-1987)
CARBOHYDRATES
CHEMICAL RADIATION EFFECTS
CHEMISTRY
CRYSTALS
DOUBLE RESONANCE METHODS
ELECTROMAGNETIC RADIATION
ELECTRONS
ELEMENTARY PARTICLES
ENDOR
FERMIONS
HYDROXY COMPOUNDS
IONIZING RADIATIONS
IRRADIATION
LEPTONS
LOW TEMPERATURE
MAGNETIC RESONANCE
MONOCRYSTALS
ORGANIC COMPOUNDS
RADIATION CHEMISTRY
RADIATION EFFECTS
RADIATIONS
RESONANCE
SPECTRA
TRAPPED ELECTRONS
X RADIATION