Search Results - "Istomova, M. A."

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  1. 1

    Ternary Reciprocal System Li+, K+ || Br by Istomova, M. A., Garkushin, I. K.

    Published in Inorganic materials (2023)
    “…— We have studied the ternary reciprocal system Li + , K + || Br – , . A likely phase compatibility diagram of the system has been chosen using thermodynamic…”
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    Journal Article
  2. 2

    Functional materials based on multinary salt systems by Garkushin, I. K., Gubanova, T. V., Frolov, E. I., Dvoryanova, E. M., Istomova, M. A., Garkushin, A. I.

    Published in Russian journal of inorganic chemistry (01-03-2015)
    “…We describe the steps of studies into multinary salt systems necessary for functional materials design. The potential of phase trees is demonstrated for…”
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  3. 3

    Tree of phases of the Li,Na,Ba‖F,Br quaternary reciprocal system and study of the LiF-NaBr-BaFBr stable triangle by Istomova, M. A., Egortsev, G. E., Garkushin, I. K.

    “…The Li,Ba‖F,Br ternary reciprocal system was investigated by differential thermal analysis. The T-x diagrams of the polythermal sections studied and the…”
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  4. 4

    Systems of fluorides and bromides of lithium, sodium, and cesium with mono- and invariant monotectic equilibria by Egortsev, G. E., Istomova, M. A., Garkushin, I. K.

    Published in Russian journal of inorganic chemistry (01-10-2013)
    “…Phase diagram with mono- and invariant equilibrium were studied by differential thermal analysis by the example of a system of fluorides and bromides of group…”
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  5. 5

    Phase complex of the Li,K,Ba‖F,Br quaternary reciprocal system by Istomova, M. A., Egortsev, G. E., Garkushin, I. K.

    “…The partition of the Li,K,Ba‖F,Br quaternary reciprocal system into simplexes was performed and confirmed by X-ray powder diffraction. Internal partitioning…”
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  6. 6

    Na,Ba∥F,Br three-component reciprocal system and analysis of the Na,Ba∥F,Hal (Hal=Cl, Br, and I) series by Istomova, M. A., Egortsev, G. E., Garkushin, I. K.

    “…A set of isopleths was studied using differential thermal analysis (DTA), the liquidus surface projection on the concentration square was plotted, and…”
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  7. 7

    Recognition of simplexes with immiscibility in ionic salt systems on the basis of phase trees for design of electrolytes for chemical current sources by Egortsev, G. E., Garkushin, I. K., Istomova, M. A., Garkushin, A. I.

    “…An algorithm is developed for searching secant elements and simplexes having immiscibility in multinary systems; phase trees of systems are the only initial…”
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