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Дата публикацииНазваниеАвторы
2022Cost Effective Synthesis of Graphene Nanomaterials for Non-Enzymatic Electrochemical Sensors for Glucose: A Comprehensive ReviewBalkourani, G.; Damartzis, T.; Brouzgou, A.; Tsiakaras, P.
2019CuO-CeO2 nanocomposite catalysts produced by mechanochemical synthesisBorchers, C.; Martin, M. L.; Vorobjeva, G. A.; Morozova, O. S.; Firsova, A. A.; Leonov, A. V.; Kurmaev, E. Z.; Kukharenko, A. I.; Zhidkov, I. S.; Cholakh, S. O.
2022Direct Electrophoretic Deposition and Characterization of Thin‐film Membranes Based on Doped BaCeO3 and CeO2 for Anode‐supported Solid Oxide Fuel CellsPikalova, E.; Osinkin, D.; Kalinina, E.
2007Dzyaloshinsky-Moriya Antisymmetric Exchange Coupling in Cuprates: Oxygen EffectsMoskvin, A. S.
2007Dzyaloshinsky-Moriya antisymmetric exchange coupling in cuprates: Oxygen effectsMoskvin, A. S.
2022El efecto del aditivo CuO en las características mecánicas y de protección contra la radiación del sistema de vidrio Li2B4O7 - Pb2O3Mahmoud, K. A.; Sayyed, M. I.; Alhuthali, A. M. S.; Hanfi, M. Y.
2018Electron States and Magnetic Phase Diagrams of Strongly Correlated SystemsIrkhin, V. Y.; Igoshev, P. A.
2023Electroosmotically induced peristaltic flow of a hybrid nanofluid in asymmetric channel: Revolutionizing nanofluid engineeringAfsar, H.; Peiwei, G.; Alshamrani, A.; Alam, M. M.; Hendy, A. S.; Zaky, M. A.
2018Evolution of the Crystal and Electronic Structures of the RBa 2 Cu 3 O 6 + δ Cuprates in AnnealingFetisov, A. V.; Estemirova, S. K.; Mitrofanov, V. Y.; Uporov, S. A.
2023Fabrication of ternary metal oxide (ZnO:NiO:CuO) nanocomposite heterojunctions for enhanced photocatalytic and antibacterial applicationsIshaque, M. Z.; Zaman, Y.; Arif, A.; Siddique, A. B.; Shahzad, M.; Ali, D.; Aslam, M.; Zaman, H.; Faizan, M.
2002Large Non-Adiabatic Hole Polarons and Matrix Element Effects in the Angle-Resolved Photoemission Spectroscopy of Dielectric CupratesMoskvin, A. S.; Kondrashov, E. N.; Cherepanov, V. I.
2022Lattice dynamics and topological surface phonon states in cuprous oxide Cu2 OWang, Z.; Zhou, W.; Rudenko, A. N.; Yuan, S.
2021Magnetically Induced Polarization in Centrosymmetric BondsSolovyev, I.; Ono, R.; Nikolaev, S.
2018Main results obtained in a series of animal experiments for the assessment of the organism's responses to metallic nanoparticles exposurePrivalova, L. I.; Sutunkova, M. P.; Minigalieva, I. A.; Gurvich, V. B.; Makeyev, O. G.; Valamina, I. V.; Shur, V. Y.; Shishkina, E. V.; Zubarev, I. V.; Solovyova, S. N.; Klinova, S. V.; Katsnelson, B. A.; Шур, В. Я.
2021Mixed ionic-electronic conductivity, phase stability and electrochemical activity of Gd-substituted La2NiO4+δ as oxygen electrode material for solid oxide fuel/electrolysis cellsPikalova, E.; Kolchugin, A.; Zakharchuk, K.; Boiba, D.; Tsvinkinberg, V.; Filonova, E.; Khrustov, A.; Yaremchenko, A.
2022Model of Charge Triplets for High-Tc CupratesMoskvin, A. S.; Panov, Y. D.
2007The Model of the Optical Switching Center and the Polarization Anomalies in Absorption Spectra of Cupric Oxide After Fast Particles IrradiationZenkov, E. V.
2007The model of the optical switching center and the polarization anomalies in absorption spectra of cupric oxide after fast particles irradiationZenkov, E. V.
2021Newly Developed Vanadium-Based Glasses and Their Potential for Nuclear Radiation Shielding Aims: A Monte Carlo Study on Gamma Ray Attenuation ParametersTekin, H. O.; Bilal, G.; Zakaly, H. M. H.; Kilic, G.; Issa, S. A. M.; Ahmed, E. M.; Rammah, Y. S.; Ene, A.
2023Optimal composition for radiation shielding in BTCu-x glass systems as determined by FLUKA simulationUosif, M. A. M.; Issa, S. A. M.; Ene, A.; Ivanov, V.; Mostafa, A. M. A.; Atta, A.; El, Agammy, E. F.; Zakaly, H. M. H.