Ag2S-Ag8SiS6-Ag8SnS6体系中的相关系及银辉石相多晶转变的热力学性质

IF 2.5 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
Samaddin R. Aslanli, Isfendiyar J. Alverdiyev, Samira Z. Imamaliyeva, Yasin I. Jafarov, Yusif A. Yusibov, Mahammad B.Babanly
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引用次数: 0

摘要

采用DTA/DSC、x射线衍射和扫描电镜对Ag2S-Ag8SiS6-Ag8SnS6体系进行了研究。绘制了Ag8SiS6- ag8sns6边界体系的T-x相图、相图的几个垂直和等温剖面以及液相面投影,计算了Ag8SiS6化合物和Ag8Si1-xSnxS6固溶体的多晶转变热力学函数。结果表明,Ag8SiS6-Ag8SnS6的边界体系是准二元的,在初始化合物的低温正交和高温三次改性过程中形成连续的固溶体。结果表明,所研究的体系是Ag-Si-Sn-S浓度四面体的准三元平面。液相表面由两个场组成,对应于高温Ag8Si1-xSnxS6固溶体基于HT-Ag2S的初次结晶。在固相线下,观察到与初始化合物和基于它们的相的多态性相关的相变。根据DSC数据,计算了银晶石相从低温正交改性到高温立方改性的相变温度、焓和熵。结果表明,与普通的多晶转变相比,上述相变的热和熵值异常高。此外,还确定了固溶体的相变熵实际上等于原始化合物的相应函数之和。这间接表明了这些化合物的两种修饰之间的溶液的准理想性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phase Relations in the Ag2S-Ag8SiS6-Ag8SnS6 System and Thermodynamic Properties of Polymorphic Transitions of Argyrodite Phases

Phase Relations in the Ag2S-Ag8SiS6-Ag8SnS6 System and Thermodynamic Properties of Polymorphic Transitions of Argyrodite Phases

The Ag2S-Ag8SiS6-Ag8SnS6 system was studied using DTA/DSC, diffraction of X-ray, as well as SEM methods. The T-x phase diagram of the Ag8SiS6-Ag8SnS6 boundary system, several vertical and isothermal sections of the phase diagram, as well as a projection of the liquidus surface, were plotted, and the thermodynamic functions of polymorphic transitions of the Ag8SiS6 compound and Ag8Si1-xSnxS6 solid solutions were calculated. It was obtained that the Ag8SiS6-Ag8SnS6 boundary system is quasi-binary and is characterized by the formation of a continuous solid solutions during low-temperature orthorhombic and high-temperature cubic modifications of the initial compounds. It is shown that investigated system is a quasi-ternary plane of the Ag–Si–Sn–S concentration tetrahedron. The liquidus surface consists of two fields corresponding to the primary crystallization of high-temperature Ag8Si1-xSnxS6 solid solutions based on HT-Ag2S. Below the solidus, phase transformations associated with the polymorphism of the initial compounds and phases based on them were observed. Based on DSC data, the temperatures, enthalpies, and entropies of phase transitions of the argyrodite phases from low-temperature orthorhombic modification to high-temperature cubic modification were calculated. It was determined that the heats and entropies of tranformations of above phases have anomalously high values ​​compared to ordinary polymorphic transitions. In addition, it was established that the entropies of phase transformations of solid solutions are practically equal to the sum of the corresponding functions of the original compounds. This indirectly indicates the quasi-ideality of solutions between both modifications of these compounds.

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来源期刊
CiteScore
4.10
自引率
9.10%
发文量
179
审稿时长
5 months
期刊介绍: International Journal of Thermophysics serves as an international medium for the publication of papers in thermophysics, assisting both generators and users of thermophysical properties data. This distinguished journal publishes both experimental and theoretical papers on thermophysical properties of matter in the liquid, gaseous, and solid states (including soft matter, biofluids, and nano- and bio-materials), on instrumentation and techniques leading to their measurement, and on computer studies of model and related systems. Studies in all ranges of temperature, pressure, wavelength, and other relevant variables are included.
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