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Radiation-induced defects in sucrose single crystals, revisited: a combined electron magnetic resonance and density functional theory study.
PubMed
Authors: De Cooman H, Pauwels E, Vrielinck H, Dimitrova A, Yordanov N, Sagstuen E, Waroquier M, Callens F
Year
2008
Paper ID
12594
Status
Peer-reviewed
Abstract Read
~2 min
Abstract Words
116
Citations
N/A
Abstract
The results are presented of an electron magnetic resonance analysis at 110 K of radiation-induced defects in sucrose single crystals X-irradiated at room temperature, yielding a total of nine (1)H hyperfine coupling tensors assigned to three different radical species. Comparisons are made with results previously reported in the literature. By means of electron paramagnetic resonance and electron nuclear double resonance temperature variation scans, most of the discrepancies between the present 110 K study and a previous 295 K study by Sagstuen and co-workers are shown to originate from the temperature dependence of proton relaxation times and hyperfine coupling constants. Finally, radical models previously suggested in the literature are convincingly refuted by means of quantum chemical density functional theory calculations.
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- The results are presented of an electron magnetic resonance analysis at 110 K of radiation-induced defects in sucrose single crystals X-irradiated at room temperature, yielding...
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