Просмотр коллекции по группе - По автору Kantorovich, S. S.

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Дата публикацииНазваниеАвторы
2016The Behavior of a Magnetic Filament in Flow under the Influence of an External Magnetic FieldLüsebrink, D.; Cerdà, J. J.; Sánchez, P. A.; Kantorovich, S. S.; Sintes, T.
2022Behaviour of a Magnetic Nanogel in a Shear FlowNovikau, I. S.; Novak, E. V.; Pyanzina, E. S.; Kantorovich, S. S.
2016Bistable self-assembly in homogeneous colloidal systems for flexible modular architecturesSteinbach, G.; Nissen, D.; Albrecht, M.; Novak, E. V.; Sanchez, P. A.; Kantorovich, S. S.; Gemming, S.; Erbe, A.
2013Calculation of the intrinsic solvation free energy profile of an ionic penetrant across a liquid-liquid interface with computer simulationsDarvas, M.; Jorge, M.; Cordeiro, M. N. D. S.; Kantorovich, S. S.; Sega, M.; Jedlovszky, P.
2008Comment on "Equilibrium Polymerization and Gas-liquid Critical Behavior in the Stockmayer Fluid"Ivanov, A. O.; Kantorovich, S. S.; Camp, P. J.
2014Communication: Kinetic and pairing contributions in the dielectric spectra of electrolyte solutionsSega, M.; Kantorovich, S. S.; Holm, C.; Arnold, A.
2020Diffusion of single active-dipolar cubes in applied fieldsKaiser, M.; Martinez, Y.; Schmidt, A. M.; Sánchez, P. A.; Kantorovich, S. S.
2019Field-responsive colloidal assemblies defined by magnetic anisotropySteinbach, G.; Schreiber, M.; Nissen, D.; Albrecht, M.; Novak, E.; Sánchez, P. A.; Kantorovich, S. S.; Gemming, S.; Erbe, A.
2021Flux and Separation of Magneto-Active Superballs in Applied FieldsKaiser, M.; Kantorovich, S. S.
2013The generalized identification of truly interfacial molecules (ITIM) algorithm for nonplanar interfacesSega, M.; Kantorovich, S. S.; Jedlovszky, P.; Jorge, M.
2020The Impact of Magnetic Field on the Conformations of Supracolloidal Polymer-like Structures with Super-paramagnetic MonomersMostarac, D.; Novak, E. V.; Sánchez, P. A.; Kantorovich, S. S.
2022The importance of being a cube: Active cubes in a microchannelKaiser, M.; Kantorovich, S. S.
2020The influence of an applied magnetic field on the self-assembly of magnetic nanogelsNovikau, I. S.; Sánchez, P. A.; Kantorovich, S. S.
2020The influence of crosslinkers and magnetic particle distribution along the filament backbone on the magnetic properties of supracolloidal linear polymer-like chainsMostarac, D.; Vaughan, L.; Sánchez, P. A.; Kantorovich, S. S.
2016Influence of dipolar interactions on the magnetic susceptibility spectra of ferrofluidsSindt, J. O.; Camp, P. J.; Kantorovich, S. S.; Elfimova, E. A.; Ivanov, A. O.
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.
2020The influence of polydispersity on the structural properties of the isotropic phase of magnetic nanoplateletsRosenberg, M.; Gregorin, Ž.; Boštjančič, P. H.; Sebastián, N.; Lisjak, D.; Kantorovich, S. S.; Mertelj, A.; Sánchez, P. A.
2020Magnetic properties of clusters of supracolloidal magnetic polymers with central attractionNovak, E. V.; Zverev, V. S.; Pyanzina, E. S.; Sánchez, P. A.; Kantorovich, S. S.
2021Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: Effects of nonlinear magnetization and matrix rigidityStolbov, O. V.; Sánchez, P. A.; Kantorovich, S. S.; Raikher, Y. L.
2022Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: Effects of nonlinear magnetization and matrix rigidityStolbov, O. V.; Sánchez, P. A.; Kantorovich, S. S.; Raikher, Y. L.