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Thermodynamic assessment of phase diagram and concentration-temperature dependences of properties of solid solutions of the GaS-GaSe system

机译:气体Gase系统固体溶液性能相图的热力学评估及浓度 - 温度依赖性

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Experimental data for the system GaS-GaSe were subjected to a critical assessment using the differential thermal analysis (DTA), X-ray diffraction and thermodynamic approach. The physicochemical and thermodynamic parameters of the GaS and GaSe compounds were taken from the literature and the authors' previous assessment, respectively. To reach a self-consistent thermodynamic description for the constituent phases in the system, the experimental on the melting point, the composition of the minimum point and the univariant curves of the GaS-GaSe system were reassessed. An ideal solution model for the liquid, which included non-molecular compounds, was employed to represent phase diagram and Gibbs free energy of mixing data. To make our investigation on invariant points more accurate, a new and complementary experimental DTA determination regarding the compounds was carried out. We clarify the temperature and melting enthalpy of the compounds that are needed to calculate thermodynamic parameters of the system. Our thermodynamic description, compatible with experimental data for the GaS-GaSe system, resulted in an agreement between the calculated and experimental data. The temperature-concentration dependences of the properties (thermodynamic functions, the width of the forbidden band, the heat capacity) of solid solutions of the GaSe-GaS system are established. Optical value was obtained on single-crystal samples. Solid solutions of the compounds were grown by the Bridgman method by directional crystallization.
机译:使用差示热分析(DTA),X射线衍射和热力学方法为系统气体GASE实验数据进行严格评估。气体和GASE化合物的物理化学和热力学参数从文献和作者以前评估分别取。为了达到在系统中的构成相的自洽的热力学的说明中,对熔点的实验中,最小点的组成和气体GASE系统的单变曲线重新评估。被使用的理想解决方案模型的液体,其中包括非分子化合物,以代表相图和混合数据的吉布斯自由能。为了使我们的不变的点更准确的调查,关于化合物一个新的和互补的实验DTA测定进行。我们澄清所需要来计算系统的热力学参数的化合物的温度和熔融焓。我们的热力学描述,与气体GASE系统的实验数据兼容,造成了计算和实验数据之间的协议。特性的温度依赖性浓度(热力学函数,禁带的宽度,该热容量)GASE废气系统的固溶体的成立。在单结晶的样品中获得的光学值。化合物的固体溶液通过由定向结晶的坩埚下降法生长。

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