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Effect of irradiation on ethyl 2‐amino‐4,5,6,7‐tetrahydrobenzo[b]thiophene‐3‐carboxylate: an ESR study
Authors:Ayhan Usta  Mehmet Birey  Nursen Sari  Aliye Altundas  Dilek Nartop
Institution:1. Department of Physics, Faculty of Science, Selcuk University, , Konya, Turkey;2. Department of Physics, Faculty of Science, Ankara University, , Ankara, Turkey;3. Department of Chemistry, Faculty of Arts and Science, Gazi University, , Ankara, Turkey;4. Department of Chemistry, Faculty of Arts and Science, Nevsehir University, , Nevsehir, Turkey
Abstract:Ethyl 2‐amino‐4,5,6,7‐tetrahydrobenzob]thiophene‐3‐carboxylate C11H15NO2S] was synthesized by the Gewald method. Its single crystals were grown from an alcohol/ethyl acetate solution at 15 °C and characterized using IR and 1H‐NMR. These single crystals were irradiated for 72 h at 298 K by a 60Co gamma source with a dose speed of 0.864 kGy/h. After irradiation, electron spin resonance (ESR) measurements were carried out to study radiation‐induced radicals in the temperature range from 120 to 450 K. Additionally, for the single crystal, ESR angular dependencies were measured in the xy, xz and yz planes of the substance. This irradiated single crystal was analyzed based on the ESR spectra. Analysis of the spectra revealed that the radical was formed by a C–H bond fission at the carbon end of the substance. It was also observed that the color of the sample changed after irradiation. The hyperfine and g parameters were determined from the experimental spectra. It was inferred from these results that the hyperfine parameters and g value exhibited anisotropic behavior. The average values of these parameters were calculated as follows: g = 2.0088, AH1=H2 = 20.70 G, AH3=H4 = 10.80 G, AHa = 4.59 G, AHb = 3.24 G and, AN = 6.10 G. Copyright © 2011 John Wiley & Sons, Ltd.
Keywords:electron spin resonance  ethyl‐amino‐4  5  6  7‐tetrahydrobenzo[b]thiophene‐3‐carboxylate  Gewald method  irradiation effects  radical
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