Heat Capacity and the Structure of Chalcogenide Glasses by Modulated Differential Scanning Calorimetry (MDSC)
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概要
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The recent novel temperature-modulated differential scanning calorimetry (MDSC) technique has been applied to characterize the thermal properties of Te_xSe_<100-x>, As_xSe_<100-x> and Ge_xSe_<100-x> chalcogenide glasses in the glass transition region. All samples in this work were given the same thermal history. The reversing and non-reversing heat flows through the glass transformation region during both heating and cooling schedules were measured. The values of the relaxation enthalpy ΔH and heat capacity C_p which characterize the thermal events in the glass transition region, were determined. The ΔH vs composition behavior shows a linear increase of ΔH with Te in Se_<100-x>Te_x glasses whereas for the Se_<100-x>As_x and Se_<100-x>Ge_x glasses ΔH evinces maxima at 16.6, 28.5, 40 at% As, and maxima at 20, 33, 40 at% Ge, respectively. The C_p vs composition plot shows a linear decrease of C_p with Te in Se_<100-x>Te_x glasses. In contrast, C_p vs composition behavior for the Se_<100-x>As_x and Se_<100-x>Ge_x glasses, reveal minima at 16.6, 28.5, 40 at% As and maxima at 20, 33, 40 at% Ge respectively. We compare our MDSC results with previously published works on glass transition in these glasses and discuss the results in terms of recent structural models for chalcogenide glasses.
- 1996-09-01
著者
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Kasap Safa
Department Of Electrical Engineering University Of Saskatchewan
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Maeda Kouji
Department Of Cardiology Hiroshima General Hospital
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Maeda Kouji
Department Of Electronics Miyazaki University
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WAGNER Tomas
Department of Electrical Engineering, University of Saskatchewan
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Wagner Tomas
Department Of Electrical Engineering University Of Saskatchewan
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