L.I. Anatychuk, Thermoelectric power converters (Institute of Thermoelectricity, Kyiv: Naukova Dumka, 2003).
D.P. Belotskii, O.N. Manik, On the relationship between thermoelectric materials melts properties and structures and the state diagrams. 1. Regularizes of elevate manifestation in the state diagrams, J. Thermoelectricity, 1, 21 (1996).
D.P. Belotskii, O.N. Manik, On the relationship of electronic properties and structures of melts to the diagrams of state in the thermoelectric materials. 2. Phase changes and electronic properties of melts, J. Thermoelectricity, 2, 23 (1996).
M.M. Krechun, Galvanic Interconnects for Thermoelectric Cooling Modules, Physics and chemistry of solid state, 20(1), 83(2019); https://doi.org/10.15330/pcss.20.1.88.
O.M. Manik, Multifactorial approach in theoretical materials science (Prut, Chernivtsi, 1999).
D.P. Belotskii, O.N. Manik, (2004). On the relationship between electronic properties and structure of melts of thermoelectric materials with state diagrams. Classification of electronic melts of semiconductors, J. Thermoelectricity, 1, 33 (2004).
H. Okamoto, Bi-Sn (Bismuth-Tin), JPEDAV, 31, 205 (2010). http://dx.doi.org/10.1007/s11669-010-9659-y.
S.-W. Chen, S.-T. Lu, J.-S. Chang, Bi-In-Te phase diagram, Journal of Alloys and Compounds, 722, 499 (2017). http://dx.doi.org/10.1016/j.jallcom.2017.06.144.
R.C. Sharma, Y.A. Chang, The Sn−Te (Tin-Tellurium) system, Bulletin of Alloy Phase Diagrams, (7), 72 (1986).
E.V. Prikhodko, The system of unpolarized ionic radii and its use for the analysis of the electronic structure and properties of substances (Naukova Dumka, Kyiv, 1973).
Comments (0)