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Дата публикацииНазваниеАвторы
2016Biasing a ferronematic-a new way to detect weak magnetic fieldTomašovičová, N.; Kováč, J.; Raikher, Y.; Éber, N.; Tóth-Katona, T.; Gdovinová, V.; Jadzyn, J.; Pinčák, R.; Kopčanský, P.
2015Closed-loop magnetic separation of nanoparticles on a packed bed of spheresMagnet, C.; Akouala, M.; Kuzhir, P.; Bossis, G.; Zubarev, A.; Wereley, N. M.
2017Effect of particle concentration on the microstructural and macromechanical properties of biocompatible magnetic hydrogelsBonhome-Espinosa, A. B.; Campos, F.; Rodriguez, I. A.; Carriel, V.; Marins, J. A.; Zubarev, A.; Duran, J. D. G.; Lopez-Lopez, M. T.
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.
2017The influence of interparticle correlations and self-assembly on the dynamic initial magnetic susceptibility spectra of ferrofluidsIvanov, A. O.; Kantorovich, S. S.; Elfimova, E. A.; Zverev, V. S.; Sindt, J. O.; Camp, P. J.
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.
2019Influence of uniform magnetic field on elastic modulus in polyacrylamide ferrogels with embedded nickel nanoparticlesMikhnevich, E. A.; Chebotkova, P. D.; Safronov, A. P.; Kurlyandskaya, G. V.
2019Influense of various forms of iron on growth of Chlorella vulgaris Beijer culturePolynov, V. A.; Maksimova, E. N.; Safronov, A. P.; Kurlyandskaya, G. V.
2017Kinetics of doublet formation in bicomponent magnetic suspensions: The role of the magnetic permeability anisotropyLopez-Lopez, M. T.; Nogueras-Lara, F.; Rodriguez-Arco, L.; Guigo, N.; Sbirrazzuoli, N.; Zubarev, A. Y.; Lacis, S.; Kuzhir, P.
2017Magnetic filtration of phase separating ferrofluids: From basic concepts to microfluidic deviceKuzhir, P.; Magnet, C.; Ezzaier, H.; Zubarev, A.; Bossis, G.
2015Magnetic Nanoparticles of (Co0.94Fe0.06)72.5Si12.5B15 and Fe78Si9B13 obtained by electric explosion of amorphous wiresBeketov, I. V.; Pérez, R.; Bagazeev, A. V.; Vazquez, M.; Medvedev, A. I.; Safronov, A.; Kurlyandskaya, G. V.
2014Magnetoimpedance of thin film meander with composite coating layer containing Ni nanoparticlesLodewijk, K. J.; Fernandez, E.; Garcia-Arribas, A.; Kurlyandskaya, G. V.; Lepalovskij, V. N.; Safronov, A. P.; Kooi, B. J.
2016Microfluidic separation of magnetic nanoparticles on an ordered array of magnetized micropillarsOrlandi, G.; Kuzhir, P.; Izmaylov, Y.; Alves, Marins, J.; Ezzaier, H.; Robert, L.; Doutre, F.; Noblin, X.; Lomenech, C.; Bossis, G.; Meunier, A.; Sandoz, G.; Zubarev, A.
2013Microstructure of bidisperse ferrofluids in a thin layerMinina, E. S.; Muratova, A. B.; Cerdá, J. J.; Kantorovich, S. S.
2019NMR study of magnetic nanoparticles Ni@CMikhalev, K. N.; Germov, A. Y.; Prokopyev, D. A.; Uimin, M. A.; Yermakov, A. Y.; Konev, A. S.; Gaviko, V. S.; Novikov, S. I.
2019Specific loss power measurements by calorimetric and thermal methods on γ-Fe 2 O 3 nanoparticles for magnetic hyperthermiaCoïsson, M.; Barrera, G.; Appino, C.; Celegato, F.; Martino, L.; Safronov, A. P.; Kurlyandskaya, G. V.; Tiberto, P.; Сафронов, А. П.
2011Structural and magnetic properties of nanoparticles of NiCuZn ferrite prepared by the self-combustion methodJacobo, S. E.; Aphesteguy, J. C.; Shegoleva, N. N.; Kurlyandskaya, G. V.
2015Surface modified Ni nanoparticles produced by the electrical explosion of wireSafronov, A. P.; Kurlyandskaya, G. V.; Bhagat, S. M.; Beketov, I. V.; Murzakaev, A. M.; Orue, I.; Larrañaga, A.; Сафронов, А. П.
2020Suspensions of magnetic nanogels at zero field: Equilibrium structural propertiesNovikau, I. S.; Minina, E. S.; Sánchez, P. A.; Kantorovich, S. S.
2017Two-stage kinetics of field-induced aggregation of medium-sized magnetic nanoparticlesEzzaier, H.; Alves, Marins, J.; Razvin, I.; Abbas, M.; Ben, Haj, Amara, A.; Zubarev, A.; Kuzhir, P.