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首页> 外文期刊>Journal of the Korean Physical Society >Study on the Thermodynamic Behavior of Sb-Te Binary Systems with Swift Heavy- Ions Irradiation at the High Temperatures
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Study on the Thermodynamic Behavior of Sb-Te Binary Systems with Swift Heavy- Ions Irradiation at the High Temperatures

机译:SB-TE二元系统在高温下辐射辐照的热力学行为研究

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The thermal propeties of a Sb(2)Te(3)sample irradiated with high-energy swift heavy ions has been studied, and the resuits are reported in the presented work. Antimony telluride samples were irradiated with 167-(MeVXe)-Xe-131 ions at intensities of 5.0 x 10(12)ion/cm(2),5.0 x 10(13)ion/cm(2)and 3.83 x 10(14)ion/cm(2). Stoppind end range of ions in matter (SRIM) analyses were performed on the Sb-Te binary system having a density of 6.50 g/cm(3), and the penertration depth of the Xe ions were determined. The thermodynamical kinetics of the Sb(2)Te(3)compound were found to be different in a certain temperature range before and after irradiation with swift heavy ions. The phase transition and the widespread effect in the differential scanning calorimetry (DSC) curve of non-irradiated sample change toward high temperatures in the 140 <= T <= 600 degrees C temperature range. The widespread effect and the phase transition in the DSC curves for irradiated samples decreased as a funation of temperature. Hourever, the thermodynamic kinetics were due to a complex mechansim in the 117 <= T <= 660 degrees C temperature range under the influenced of swift heavy ions. The value of Wigner enthalpy linearly decreases for non-irradiated and irradiated samples. Recombination kinetics and migration due to the energy levels of defects influencd the kinetics of the thermodynamic functions depending on the temperature. Moreover, the results obtained for the activation energy shown that the dynamics of the mechanism changed from a volumetric to a superficial character.
机译:已经研究了用高能迅速重离子照射的Sb(2)Te(3)样品的热成果,并在所呈现的工作中报告了剩余部。用5.0×10(12)离子/ cm(2),5.0×10(13)离子/ cm(2)和3.83×10(14),用5.0×10(12)离子/ cm(2),5.0×10(13)离子/ cm(14 )离子/ cm(2)。在密度为6.50g / cm(3)的Sb-TE二元体系上对物质(SRIM)分析的停止末端范围(SRIM)分析,测定Xe离子的渗透深度。发现Sb(2)Te(3)化合物的热力学动力学在用SWIFT重离子照射之前和之后的一定温度范围内不同。差分扫描量热法(DSC)在140 <= T <= 600℃的高温变化的差示扫描量热法(DSC)曲线中的相位转变和普遍效应。辐照样品的DSC曲线中的广泛效应和相转变作为温度的播种降低。每小时,热力学动力学是由于117中的复合物Mechansim,在迅速的重量离子的影响下的117℃温度范围内。 Wigner焓的值对于非照射和辐照样品线性降低。根据缺陷的能量水平,重组动力学和迁移影响热力学功能的动力学,这取决于温度。此外,用于激活能量的结果表明,该机构的动态从体积变为浅表性质。

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