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SO3- radicals for EPR dosimetry: X- and Q band EPRstudy and LET dependency of crystalline potassium dithionate

Gustafsson, Håkan (författare)
Östergötlands Läns Landsting,Linköpings universitet,Medicinsk radiofysik,Hälsouniversitetet,Medicinsk teknik i Östergötland
Lund, Anders (författare)
Linköpings universitet,Institutionen för fysik, kemi och biologi,Tekniska högskolan
Hole, Eli O. (författare)
Department of Physics, University of Oslo, Norway
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Sagstuen, Einar (författare)
Department of Physics, University of Oslo, Norway
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 (creator_code:org_t)
Pergamon Press, 2013
2013
Engelska.
Ingår i: Radiation Measurements. - : Pergamon Press. - 1350-4487 .- 1879-0925. ; 59, s. 123-128
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The structures of the free radicals formed by the irradiation of potassium dithionate (K 2S2O6) with 60Co g -rays and 14N7þ ions were investigated by EPR to further examine a recently proposed LET effect in this material. Two types of SO 3 radical ions were identified in X-irradiated single crystals by measurements at X- and Q bands. One of these (S1) exhibited 33S hyperfine couplings At ¼ 12.49, Ajj ¼ 15.60 mT, the other (S2) A t ¼ 11.29, Ajj ¼ 13.92 mT. The g-factors were nearly isotropic, gt ¼ 2.0010, gjj ¼ 2.0003; and g t ¼ 2.0026, gjj ¼ 2.0008, respectively. The 33S hyperfine coupling tensors and g-tensors were axially symmetric about the trigonal -axis, coinciding with the direction of the SeS bonds of the two nonequivalent S 2O2 6 ions in the crystal. A model for the radiation damage was proposed in which the SO 3 radical ions retain the orientation of the SO 3 groups, aligned along the trigonal axis. The structure of a third main radical species (S3) with gt ¼ 2.0026, gjj ¼ 2.0052 could not be unambiguously assigned, due to undetected 33S features. The relative integrated intensities of S1, S2 and S3 depended on the radiation quality and were approximately estimated as 0.18: 0.65:0.17 for 60Co g-rays and 0.47: 0.38: 0.15 for 14N7þ ions. Additional weak lines on the low field side of the main signal were tentatively attributed to SO 2 radical ions. An even weaker strongly anisotropic pair of lines was attributed to SO 3 radical pairs separated by 0.93 e0.95 nm along the trigonal axis.

Nyckelord

Potassium dithionate
EPR dosimetry
radical ions
Linear energy transfer (LET)

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