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Showing results 2 to 19 of 19 < previous 
Issue DateTitleAuthor(s)
2023Chemical Stability Aspects of BaCe0.7–xFexZr0.2Y0.1O3–δ Mixed Ionic-Electronic Conductors as Promising Electrodes for Protonic Ceramic Fuel CellsTarutina, L. R.; Starostina, I. A.; Vdovin, G. K.; Pershina, S. V.; Vovkotrub, E. G.; Murashkina, A. A.
2022Crystal Structure and Concentration-Driven Phase Transitions in Lu(1−x)ScxFeO3 (0 ≤ x ≤ 1) Prepared by the Sol–Gel MethodPakalniškis, A.; Alikin, D. O.; Turygin, A. P.; Zhaludkevich, A. L.; Silibin, M. V.; Zhaludkevich, D. V.; Niaura, G.; Zarkov, A.; Skaudžius, R.; Karpinsky, D. V.; Kareiva, A.
2020Densification, morphological and transport properties of functional La1–xBaxYbO3– δ ceramic materialsKasyanova, A. V.; Lyagaeva, J. G.; Farlenkov, A. S.; Vylkov, A. I.; Plaksin, S. V.; Medvedev, D. A.; Demin, A. K.
2019Double perovskites REBaCo2-xMxO6-δ (RE=La, Pr, Nd, Eu, Gd, Y; M=Fe, Mn) as energy-related materials: An overviewTsvetkov, D. S.; Ivanov, I. L.; Malyshkin, D. A.; Sednev, A. L.; Sereda, V. V.; Zuev, A. Y.
2021Efficient Electrochemical Water Splitting with PdSn4Dirac Nodal Arc SemimetalBoukhvalov, D. W.; Kuo, C. -N.; Nappini, S.; Marchionni, A.; D’Olimpio, G.; Filippi, J.; Mauri, S.; Torelli, P.; Lue, C. S.; Vizza, F.; Politano, A.
2022Electrodeposition of Silicon from the Low-Melting LiCl-KCl-CsCl-K2SiF6ElectrolytesUstinova, Y.; Pavlenko, O.; Gevel, T.; Zhuk, S.; Suzdaltsev, A.; Zaikov, Y.
2019Fluorine and chlorine doping in oxygen-deficient perovskites: A strategy for improving chemical stabilityTarasova, N.; Animitsa, I.
2022The Gd2−x Mgx Zr2 O7−x/2 Solid Solution: Ionic Conductivity and Chemical Stability in the Melt of LiCl-Li2 OAnokhina, I.; Pavlenko, O.; Proskurnina, N.; Dedyukhin, A.; Animitsa, I.
2022Layered Oxygen-Deficient Double Perovskites as Promising Cathode Materials for Solid Oxide Fuel CellsKlyndyuk, A. I.; Chizhova, E. A.; Kharytonau, D. S.; Medvedev, D. A.
2023A Multitransition Methanol Survey toward a Large Sample of High-mass Star-forming RegionsZhao, J. Y.; Zhang, J. S.; Wang, Y. X.; Qiu, J. J.; Yan, Y. T.; Yu, H. Z.; Chen, J. L.; Zou, Y. P.
2023Nature of Interlayer Bonds in Two-Dimensional MaterialsPushkarev, G. V.; Mazurenko, V. G.; Mazurenko, V. V.; Boukhvalov, D. W.
2022Nickel-Containing Perovskites, PrNi0.4Fe0.6O3–δ and PrNi0.4Co0.6O3–δ, as Potential Electrodes for Protonic Ceramic Electrochemical CellsTarutin, A. P.; Kasyanova, A. V.; Vdovin, G. K.; Lyagaeva, J. G.; Medvedev, D. A.
2019Orientation-controlled, low-temperature plasma growth and applications of h-BN nanosheetsMerenkov, I. S.; Myshenkov, M. S.; Zhukov, Y. M.; Sato, Y.; Frolova, T. S.; Danilov, D. V.; Kasatkin, I. A.; Medvedev, O. S.; Pushkarev, R. V.; Sinitsyna, O. I.; Terauchi, M.; Zvereva, I. A.; Kosinova, M. L.; Ostrikov, K.
2021Revisiting the Chemical Stability of Germanium Selenide (GeSe) and the Origin of its Photocatalytic EfficiencyBoukhvalov, D. W.; Nappini, S.; Vorokhta, M.; Menteş, T. O.; Piliai, L.; Panahi, M.; Genuzio, F.; De Santis, J.; Kuo, C. -N.; Lue, C. S.; Paolucci, V.; Locatelli, A.; Bondino, F.; Politano, A.
2022Tin Diselenide (SnSe2) Van der Waals Semiconductor: Surface Chemical Reactivity, Ambient Stability, Chemical and Optical SensorsD’olimpio, G.; Farias, D.; Kuo, C. -N.; Ottaviano, L.; Lue, C. S.; Boukhvalov, D. W.; Politano, A.
2023Unveiling the Catalytic Potential of Topological Nodal-Line Semimetal AuSn4 for Hydrogen Evolution and CO2 ReductionBoukhvalov, D. W.; D’Olimpio, G.; Mazzola, F.; Kuo, C. -N.; Mardanya, S.; Fujii, J.; Politano, G. G.; Lue, C. S.; Agarwal, A.; Vobornik, I.; Torelli, P.; Politano, A.
2008Исследование обменной емкости и химической устойчивости образцов типа Me(II)₀,₅Me(IV)₂(PO₄)₃Лукутцов, А. А.; Горбачева, Н. В.; Редозубова, О. А.; Lukutsov, A. A.; Gorbacheva, N. V.; Redozubova, O. A.
2015Электропроводность флюоритоподобных сложных оксидов в системе La6WO12─La10W2O21 и Pr6WO12─Pr10W2O21 : магистерская диссертацияПартин, Г. С.; Partin, G. S.