Experimental study of phase equilibria and thermodynamic properties of the Tl–Se–I system

被引:0
作者
Dunya Mahammad Babanly
Ziya Saxaveddin Aliev
Vusala Asim Majidzade
Dilgam Babir Tagiyev
Mahammad Baba Babanly
机构
[1] Institute of Catalysis and Inorganic Chemistry ANAS,Materials Science and Nanotechnology Department
[2] French Azerbaijani University (UFAZ),undefined
[3] Azerbaijani State Oil and Industrial University,undefined
[4] Near East University,undefined
来源
Journal of Thermal Analysis and Calorimetry | 2018年 / 134卷
关键词
Thallium selenide–iodides; Tl; Se; I; Tl; SeI; Solid solutions; Phase diagram; Thermodynamic properties;
D O I
暂无
中图分类号
学科分类号
摘要
The phase equilibria in the ternary Tl–Se–I system have been investigated by means of differential thermal analysis, X-ray powder diffraction and the electromotive force measurements (EMF) of electrochemical cells relative to the thallium electrode with ionic liquid as an electrolyte. Several polythermal sections, the isothermal section at 300 K and the projection of the liquidus surface of the system have been constructed. The homogeneity and primary crystallization regions of intermediate phases, as well as types and coordinates of non- and monovariant equilibria have been determined. Formation of two congruently melting ternary compounds (Tl5Se2I at 720 K, and Tl6SeI4 at 705 K) was observed. It was revealed that the system is characterized by the existence of wide areas of α- (based on Tl2Se) and δ-solid solutions (based on Tl5Se2I). Standard thermodynamic functions of formation and standard entropies of Tl5Se2I and Tl6SeI4 compounds were calculated based on the thermodynamic study of Tl–Se–I alloys by the EMF measurements with an ionic liquid electrolyte.
引用
收藏
页码:1765 / 1773
页数:8
相关论文
共 130 条
[1]  
Wibowo AC(2013)Photoconductivity in the chalcohalide semiconductor, SbSeI: a new candidate for hard radiation detection Inorg Chem 52 7045-7046
[2]  
Malliakas CD(2014)Fabrication and characterization of SbSI gel for humidity sensors Sens Actuators A Phys 210 119-130
[3]  
Lui Z(2017)Topological quantum phase transition and superconductivity induced by pressure in the bismuth tellurohalide BiTeI Adv Mater 90 312-316
[4]  
Peters JA(2017)Birefringence of SbSI and SbSeI crystals at the region of antiferroelectric phase transition Phase Trans Multinatl J 83 117-120
[5]  
Nowak M(2015)Dielectric and electrical properties of SbSI and SbSeI single crystals in the region of antiferroelectric phase transition J Phys Chem Solids 7 11621-116405
[6]  
Nowrot A(2016)Spin-texture inversion in the giant Rashba semiconductor BiTeI Nat Commun 109 116403-10034
[7]  
Szperlich P(2012)Disentanglement of surface and bulk Rashba spin splitting in noncentrosymmetric BiTeI Phys Rev Lett 133 10030-2877
[8]  
Jesionek M(2011)Thallium chalcohalides for X-ray and γ-ray detection J Am Chem Soc 25 2868-041305
[9]  
Yanpeng Q(2013)Photoconductivity in Tl6SI4: a novel semiconductor for hard radiation detection Chem Mater 94 041302-145114
[10]  
Wujun S(2016)Giant Rashba spin splitting with unconventional spin texture in a quantum spin hall insulator Phys Rev B 121 145102-27