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Thermal Expansion of Fedotovite K2Cu3O(SO4)3 and Piypite K4Cu4O(SO4)4·(Na,Cu)Cl
Shablinskii A.P., Filatov S.K., Biryukov Y.P., Yuriev A.A., Vergasova L.P.
Fragmentary Model of the Atomic Structure of the Ion-Conducting Semiconductor Glass AgGeAsSe3
Aleinikova K.B., Zinchenko E.N., Melnikova N.V.
Viscosity, Free Activation Energy, and Glass Transition Temperature of Potassium Boron K2O–B2O3 Melts
Khokhryakov A.A., Samoylova M.A., Ryabov V.V., Vedmid’ L.B., Mel’chakov S.Y.
Cluster Self-Organization of Intermetallic Systems: Clusters-Precursors K4, K6, and K7 for the Self-Assembly of Crystal Structures Y20Cu20Mg64-oC104, Y20Cu20Mg52-oC92, and Y3(NiAl3)Ge2-hP9
Shevchenko V.Y., Ilyushin G.D.
Anisotropy of Thermal Expansion of Oxoborate Warwickite
Biryukov Y.P., Bubnova R.S., Filatov S.K.
Thermal Behavior (–180 ≤ T ≤ 1000°C) of Magnesium Orthosilicate Hydroxylclinohumite Mg5(SiO4)2(OH,F)2
Biryukov Y.P., Bubnova R.S., Firsova V.A.
Thermal Expansion of Ba3Lu(BO3)3 Borate
Biryukov Y.P., Bubnova R.S.
Nature of the Local Environment of Atoms in Ge3Sb2Te6, Ge2Sb2Te5, GeSb2Te4, and GeSb4Te7 Amorphous and Crystalline Films
Bordovsky G.A., Marchenko A.V., Nasredinov F.S., Petrushin Y.A., Seregin P.P.
Synthesis and Crystal Structure of a Novel Organo-Inorganic Hybrid Borate, K[B5O6(OH)4][B(OH)3]2(H2O)(C10H20O5)2
Yukhno V.A., Charkin D.O., Volkov S.N., Manelis L.S., Gosteva A.N., Aksenov S.M., Bubnova R.S.
Study of the Electrophysical Properties of Solid Solutions with a Perovskite Structure in La2O3–SrO–Ni(Co,Fe)2O3–δ Systems for Cathode Electrodes for Fuel Cells
Kalinina M.V., Dyuskina D.A., Polyakova I.G., Arsent’ev M.Y., Shilova O.A.
Crystal Structure of a Solid Solution of Sr0.5Ba0.5Bi2O(BO3)2
Shablinskii A.P., Volkov S.N., Bubnova R.S., Filatov S.K.
Cluster Self-Organization of Intermetallic Systems: Cluster Precursors K4, K5, and K9 for the Self-Assembly of Zr72P36-oS108, Zr18Ni22-tI40, and Zr4Ni4-oS8 Crystal Structures
Shevchenko V.Y., Ilyushin G.D.
Cluster Self-Organization of Crystal-Forming Systems: New Three-Layer (K155 = Al@Al6Pd8@Pd12Al30@Pd8Сo18Al72) and Double-Layer (K55 = Co@Al12@Co12Al30) Precursor Clusters for the Self-Assembly of the Pd112Co204Al684-cP1000 Crystal Structure
Shevchenko V.Y., Ilyushin G.D.
Cluster Self-Organization of Intermetallic Systems: Clusters-Precursors K15, K6, K5, and K4 for the Self-Assembly of Crystal Structures Pu31Rh20-tI204, Pu20Os12-tI32, (Pu4Co)2(Pu4)-tI28, (Ti4Ni)2(Bi4)-tI28, and Bi4-tI8
Shevchenko V.Y., Ilyushin G.D.
Cluster Self-Organization of Intermetallic Systems: Cluster Precursors K3, K4, K5, K7, and K8 for the Self-Assembly of Lu66Te24-mC90, Te4Lu28-oC32, Lu3(TeLu3)Lu2-hP9, and Lu4Te4-cF8 Crystal Structures
Shevchenko V.Y., Ilyushin G.D.
Cluster Self-Organization of Intermetallic Systems: New Two-Layer Cluster-Precursors K57 = Li@15(Ga6Cu9)@41(Cu15Mg26) and K41 = 0@8(Mg2Ga6)@33(Li6Mg3Ga24) in the Li10Mg34Cu24Ga71-hP139 Crystal Structure and K5 = 0@Ca2LiInGe in the Ca2LiInGe2-oP24 Crystal Structure
Shevchenko V.Y., Ilyushin G.D.
Synthesis and Characterization of Ceramics BaxMg(2 – x)F4 Activated by Tungsten
Lisitsyn V.M., Musakhanov D.A., Korzhneva T.G., Strelkova A.V., Lisitsyna L.A., Golkovsky M.G., Zhunusbekov A.M., Karipbaev Z.T., Kozlovsky A.L.
Cluster Self-Organization of Intermetallic Systems: K3, K4, K5, K6, and K13 Clusters-Precursors for the Self-Assembly of U8Ni10Al36-mC54, U20Ni26-mC46, and U8Co8-cI16 Crystal Structures
Shevchenko V.Y., Ilyushin G.D.
1 - 18 of 18 Items

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