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Отображение результатов 2 до 20 из 20 < назад 
Дата публикацииНазваниеАвторы
2022Biological Impact of γ-Fe2O3 Magnetic Nanoparticles Obtained by Laser Target Evaporation: Focus on Magnetic Biosensor ApplicationsFadeyev, F. A.; Blyakhman, F. A.; Safronov, A. P.; Melnikov, G. Y.; Nikanorova, A. D.; Novoselova, I. P.; Kurlyandskaya, G. V.
2020Chain formation and phase separation in ferrofluids: The influence on viscous propertiesIvanov, A. O.; Zubarev, A.
2005Coupling of University Photonic Courses with Clinical TrainingYakovleva, S. V.
2019Design magnetic matrices for cell technology supporting devicesVolchkov, S. O.; Melnikov, G. Y.; Blyakhman, F. A.; Kurlyandskaya, G. V.
2023Design of Spherical Gel-Based Magnetic Composites: Synthesis and CharacterizationShabadrov, P. A.; Safronov, A. P.; Kurilova, N. M.; Blyakhman, F. A.
2020Dynamics of particulate assemblages in metastable liquids: A test of theory with nucleation and growth kineticsAlexandrova, I. V.; Alexandrov, D. V.
2019Ferrogels ultrasonography for biomedical applicationsBlyakhman, F. A.; Sokolov, S. Y.; Safronov, A. P.; Dinislamova, O. A.; Shklyar, T. F.; Zubarev, A. Y.; Kurlyandskaya, G. V.; Сафронов, А. П.
2022GdxFe3-xO4 Nanoparticles with Silane Shell as Potential Theranostic Agent for Cancer TreatmentZibert, A. V.; Lissovskaya, L. I.; Korolkov, I. V.; Zdorovets, M. V.
2019Influence of metal containing nanocomposites on the kinetics of microbial population developmentSimonova, E. V.; Kokorina, L. A.; Denisova, T. P.; Maximova, E. N.; Safronov, A. P.; Sorokina, A. I.; Kurlyandskaya, G. V.
2020Kinetics of field-induced phase separation of a magnetic colloid under rotating magnetic fieldsRaboisson-Michel, M.; Queiros, Campos, J.; Schaub, S.; Zubarev, A.; Verger-Dubois, G.; Kuzhir, P.
2021Magnetoimpedance thin film sensor for detecting of stray fields of magnetic particles in blood vesselMelnikov, G. Yu.; Lepalovskij, V. N.; Svalov, A. V.; Safronov, A. P.; Kurlyandskaya, G. V.
2022Mechanical Force Acting on Ferrogel in a Non-Uniform Magnetic Field: Measurements and ModelingBlyakhman, F. A.; Safronov, A. P.; Zubarev, A. Y.; Melnikov, G. Y.; Sokolov, S. Y.; Larrañaga, Varga, A.; Kurlyandskaya, G. V.
2023Multicore-based ferrofluids in zero field: initial magnetic susceptibility and self-assembly mechanismsKuznetsov, A. A.; Novak, E. V.; Pyanzina, E. S.; Kantorovich, S. S.
2015Nanoscale Piezoelectric Properties of Self-Assembled Fmoc-FF Peptide Fibrous NetworksRyan, K.; Beirne, J.; Redmond, G.; Kilpatrick, J. I.; Guyonnet, J.; Buchete, N. -V.; Kholkin, A. L.; Rodriguez, B. J.
2019On the theory of crystal growth in metastable systems with biomedical applications: Protein and insulin crystallizationAlexandrov, D. V.; Nizovtseva, I. G.
2016Pyroelectric effect and polarization instability in self-assembled diphenylalanine microtubesEsin, A.; Baturin, I.; Nikitin, T.; Vasilev, S.; Salehli, F.; Shur, V. Ya.; Kholkin, A. L.; Шур, В. Я.
2023Remote Positioning of Spherical Alginate Ferrogels in a Fluid Flow by a Magnetic Field: Experimental and Computer SimulationBlyakhman, F.; Safronov, A.; Starodumov, I.; Kuznetsova, D.; Kurlyandskaya, G.
2018Rheology of magnetic alginate hydrogelsGila-Vilchez, C.; Bonhome-Espinosa, A. B.; Kuzhir, P.; Zubarev, A.; Duran, J. D. G.; Lopez-Lopez, M. T.
дек-2022Variability of pathogenicity factors representative of the human microbiome under the influence of γ-Fe2O3 nanoparticlesKokorina, L. A.; Chernyavskaya, Ya. V.; Denisova, T. P.; Simonova, E. V.; Safronov, A. P.; Kurlyandskaya, G. V.