Venue
ICMF 11 will be held in Slovakia in the country's second largest city Košice, which is a hub of industry, commerce, science and culture of East Slovakia. Košice can be reached easily by air and ground transport.
Conference program - poster sessions
Poster size: 80 cm (wide) x 120 cm (high)
Poster session 1: Wednesday, July 25th, 2007 |
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TOPIC 1: Synthesis and Design of Magnetic Colloids |
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| Number | Authors | Title |
| 1P1 | B. Jeyadevan, R.J. Joseyphus, K. Kodama, Y. Konno, K. Shinoda, K. Sato, H. Takahashi, Y. Sato, K. Tohji | Polyol derived soft process for the synthesis of Fe and Fe-Co alloy particles |
| 1P2 | E. Illes, E. Tombacz | Humate coated magnetite nanoparticles with enhanced colloid stability for biomedical application |
| 1P3 | E. Tombacz, D. Bica, A. Hajdu, E. Illes, A. Majzik, L. Vekas | Surfactant double layer stabilized magnetic nanofluids for biomedical application |
| 1P4 | N. Crainic, D. Bica, A. Torres Marques, N.C. Popa, P.J. Novoa, O. Marinica, C.P. Moreira de Sa, L. Vekas | Use of the magnetic fluids to obtain nano-composite materials |
| 1P5 | R. Betancourt-Galindo, S.Rodríguez-Fernández, L.A. García-Cerda, J.A. Matutes-Aquino | Synthesis of magnetic poly(styrene-methacrylic acid) microspheres prepared by miniemulsion polymerization |
| 1P6 | J.G. Santos, L.B. Silveira, L. Olenka, A.C. Oliveira, A.F.R. Rodriguez, V. Garg, A.C. Bento, R.G. Oliveira,P.C. Morais, P.P.C. Sartorato | Magnetic nanoparticle dispersed in copaiba oil |
| 1P7 | A. Kosak, A. Znidarsic | Surface functionalization of magnetic nanoparticles for ferrofluid applications |
| 1P8 | D. Kaufmann, J. M. Lóbez Comeras, M. Krekhova, G. Lattermann | Thermoreversible hydro-ferrogels |
| 1P9 | M. Krekhova, G. Lattermann | Thermoreversible organo-ferrogels |
| 1P10 | F.Vereda, J. De Vicente, R.Hidalgo-Álvarez | Preparation of rod-like particles of Co and Ni ferrites |
| 1P11 | F.Vereda, J. De Vicente, R.Hidalgo-Álvarez | Formation of magnetite particles in the presence of a magnetic field: lessons learned |
| 1P12 | D. Heinrich, A.R. Goni, C. Thomsen | Time evolution of clustering in ionic ferrofluids |
| 1P13 | S. Soenen, M. Hodenius, T. Schmitz-Rode, M. De Cuyper |
Adsorption of bovine serum albumin and egg yolk phosvitin on nanosized magnetite cores |
| 1P14 | A.N. Kudlash, S.A. Vorobyova, A.I. Lesnikovich |
Interphase synthesis of air stable colloidal magnetic cobalt nanoparticles |
| 1P15 | L. Tonggang, L. Shujin, Y. Zhiyi |
Preparation and properties of magnetic fluids containing carbon-coated iron nanoparticles |
| 1P16 | J. Xia, H. Shen, W. Zhang |
Novel automatically controlled machine to prepare magnetic fluids |
| 1P17 | M.Spasova, M. Farle |
Multifunctional magnetic composite microspheres and hollow capsules |
| 1P18 | "A.F.C. Campos, E.P. Marinho, A.P.Ibaldo, R. Aquino, J. Depeyrot, F.A. Tourinho" |
Voltammetry of electric double-layered magnetic fluids |
| 1P19 | K.A. Kekalo, T.G. Shutova, V.E. Agabekov |
Controllable modification of lignocellulose fiber surface with water-based magnetic fluid |
| 1P20 | M. Racuciu, D.E. Creanga, A. Airinei, V. Badescu |
Biocompatible magnetic fluid based on tartaric acid coated magnetite |
| 1P21 | V. Kumar, V.K. Jain, S. Singh, P.C. Kothari, R.P. Pant |
Effect of annealing atmospheres on cobalt ferrite nanoparticles and their applications |
| 1P22 | F.M. L. Oliveira, A.P. Canizares, L.C. Figueiredo, K.S. Neto, P.C. Morais |
Investigation of nanoparticle clusterization in magnetic fluids driven by surface-coating desorption |
| 1P23 | M.A.G. Soler, E.C.D. Lima, S.W. da Silva, T.F.O. Mělo, A.C.M. Pimenta, J.P. Sinnecker, V.K. Garg, A.C. Oliveira, M.A. Novak, P.C. Morais |
Cobalt ferrite-based magnetic fluid: aging investigation |
| 1P24 | G.E.S. Brito, L.F.Gamara, M.A. Momesso, J.B. Mamani, S.M. Carneiro, D.M. Escriba,E. Amaro Jr. |
Synthesis and characterization of biocompatible maghemite nanoparticles based sols for molecular imaging |
| 1P25 | D. Makovec, S. Campelj, S. Gyergyek, M. Bele, M. Drofenik |
Stability of water-based magnetic fluids |
| 1P26 | S. Campelj, D. Makovec, M. Drofenik |
Preparation and properties of water-based ferrofluids with citric acid as a surfactant |
| 1P27 | I. Segal, A. Zablotskaya, E. Lukevics, M. Maiorov, D. Zablotsky, E. Blums, I. Shestakova, I. Domracheva |
Synthesis and biological properties of iron oxide based magnetoliposomes with siloxyalkylamine cover |
| 1P28 | H.S. Park, L.F. Cao, G. Dodbiba, T. Fujita |
Dispersion of silica-coated ferromagnetic fine powder in liquid gallium |
| 1P29 | L.F. Cao, H.S. Park, T. Fujita | Investigation on small particles dispersed into liquid gallium |
| 1P30 | N. Buske | Perfluorinated polyether based ferrite magnetic fluids |
TOPIC 2: Physical Properties of Magnetic Fluids |
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| Number | Authors | Title |
| 2P1 | E.Wandersman, G. Meriguet, E.Dubois, V. Dupuis, R. Perzynski | Rotational freezing and ageing in a glass-forming ferrofluid |
| 2P2 | A.V. Feoktystov, M.V. Avdeev, V.L. Aksenov, L.A. Bulavin, D. Bica, L. Vekas, V.M. Garamus, V. Almasan | Small-angle neutron scattering contrast variation on ferrofluid magnetite/myristic acid/benzene |
| 2P3 | E. Lakhtina, A. Lebedev, K. Morozov, B. Huke, M. Lücke, N. Matoussevitch, H. Bönnemann | Magnetic properties of strongly interacting ferrofluids |
| 2P4 | M. Büttner, T. Müller, F. Schmidl, S. Prass, C. Lang, D. Schüler, P. Seidel | Temperature dependent Néel relaxation (TMRX) measurements on magnetosomes |
| 2P5 | K. Erglis, D. Zhulenkovs, A. Sharipo, A. Cebers | Bending modulus of DNA linked magnetic filaments in dependence on ionic strength |
| 2P6 | A. Wiedenmann, U. Keiderling, K. Habicht, M. Meissner, D. Wallacher, R. Gähler, R. P. May, S. Prévost, M. Klokkenburg, B. Erné, J. Kohlbrecher | Low temperature dynamics of magnetic colloids studied by time-resolved small angle neutron scattering (SANS) |
| 2P7 | E. Elfimova, A. Ivanov, A. Zubarev | Interparticle correlations and structure factor of magnetic fluids |
| 2P8 | V. Mendelev, A. Ivanov, M. Klokkenburg, B. Erné | Experimental evidence of dipolar chain influence on ferrofluid magnetic properties |
| 2P9 | V. Zubko, A. Lesnikovich, D. Zubko, S. Vorobyova, G. Sitsko | The impedance spectroscopy of magnetic fluids |
| 2P10 | E. Wandersman, G. Mériguet, E. Dubois, V. Dupuis, R. Perzynski, M. Avdeev, V. Haramus, A. Robert | Magnetic scattering in concentrated magnetic fluids and solids |
| 2P11 | S.I. Alves, D. Soga, L.F. Gamara, G.E.S.Brito, E.Amaro Jr., A.M. Figueiredo Neto | Nonlinear optical properties of biocompatible ferrofluids |
| 2P12 | O. Ayala-Valenzuela, J. Matutes-Aquino, J. Elizalde-Galindo, C. Botez, O. Fernández-Rodríguez |
A comparative study of magnetite-isopar m magnetic fluid by two ac susceptibility techniques |
| 2P13 | I. Szalai, S. Dietrich |
Magnetization and magnetic susceptibility of ferrofluids |
| 2P14 | L. B. Silveira, J.G. Santos, A.C. Oliveira, B. M. Laçava, A.C. Tedesco, A.R. Pereira, P.C. Morais |
Temperature and concentration investigation of maghemite-based bsa nanocomposite using magnetic resonance |
| 2P15 | M.T.A. Elói, P.C. Morais, A.F. Bakuzis |
Maping nanoparticle chain-lenght in magnetic fluids: comparison between birefringence measurements and theoretical models |
| 2P16 | H.L.G. Couto, F.R. Cunha |
On the influence of the hydrodynamic interactions on the aggregation rate of magnetic spheres in a dilute suspension |
| 2P17 | Y.V. Kulvelis, V.A. Trunov, V.T. Lebedev, D.N. Orlova, Gy. Torok |
Synthesis and structural study of aqueos ferrofluids with porphyrines |
| 2P18 | V.T.Lebedev, Gy.Torok, L.Vekas |
Soft modes in ferrofluids |
| 2P19 | E.M. Anitas, C. Muresan, M. Balasoiu, A.I. Kuklin, I. Bica, Yu.S. Kovalev, O.L. Orelovich |
Small angle neutron scattering and electron microscopy study of ferrofluids in magnetic elastomers |
| 2P20 | V.I. Petrenko, M.V. Avdeev, L.A. Bulavin, V.L. Aksenov, L. Rosta |
Interaction of mono-carboxylic acids in non-polar organic solvent by small-angle neutron scattering |
| 2P21 | F. Ludwig, F. Ghaffari, E. Heim, K. Enpuku, J. Hojo, N. Enomoto, F. Dang, K. Yoshinaga, M. Schilling |
Investigation of the aggregation behavior of magnetite nano-particle suspensions utilizing fluxgate magnetorelaxometry |
| 2P22 | E. Heim, S. Harling, F. Ludwig, H. Menzel, M. Schilling |
Fluxgate magnetorelaxometry for characterization of hydrogel polymerization kinetics and emplacement capacity |
| 2P23 | K. Aurich, S. Nagel, W. Weitschies |
Magneto-optical relaxation measurements for the characterization of magnetic probes and biomolecular interactions |
| 2P24 | A. Raval, R. Patel |
To determine Curie temperature of ferrofluid using light extinction |
| 2P25 | M.M. Maiorov, E. Blums, G. Kronkalns |
The heat generation by an alternating magnetic field of low freqency in a ferrofluid: the dependence of energy dissipation on temperature |
| 2P26 | G. Kronkalns, A. Dreimane, M.M. Maiorov |
The effect of thermal treatment on the magnetic properties of spinel ferrite nanoparticles in magnetic fluids |
| 2P27 | A. Cebers, T. Cirulis, O. Lietuvietis |
Escape of magnetotactic bacteria in a third dimension in a rotating magnetic field |
| 2P28 | C. Märkert, J. Wagner, R. Hempelmann |
Rodlike magnetic core shell particles as model system for lyotropic liquid crystals |
| 2P29 | T. Hosono, T. Atsumi, Y. Sato, K. Tohji, B. Jeyadevan |
Effect of size distribution of magnetite nanoparticles on magnetic heat dissipation |
| 2P30 | C. Gollwitzer, A. Turanov, M. Krekhova, G. Lattermann, I. Rehberg, R. Richter |
Magnetoelastic balls in uniform pulsed magnetic fields |
| 2P31 | C. Mac Oireachtaigh, P.C. Fannin |
Investigation of the nonlinear loss properties of magnetic fluids |
| 2P32 | P.C. Fannin, I. Malaescu, C.N. Marin, N. Stefu |
Frequency and field dependence of the electromagnetic field propagation constant in magnetic fluids in the GHz range |
| 2P33 | P.C. Fannin, I. Malaescu, C.N. Marin, N. Stefu |
Specific loss power in magnetic fluids in the microwave range |
| 2P34 | P.C. Fannin, C. Mac Oireachtaigh |
Complex susceptibility measurements in the microwave region by means of the combined use of open-circuit and short-circuit measurements |
| 2P35 | P.C. Fannin, C.N. Marin, I. Malaescu |
The spectroscopic splitting factor of nanoparticles in magnetic fluids |
| 2P36 | K. Parekh, R.V. Upadhyay, R.V. Mehta, V.K. Aswal |
Small angle neutron scattering study of monodispersed magnetic fluid |
| 2P37 | R. Desai, R. Patel, K. Parekh, R.V. Upadhyay, R.V. Mehta |
Zero forward scattering by dispersion of micron sized magnetite spheres in magnetic fluid: Effect of concentration |
| 2P38 | R. Patel, R.V. Upadhyay, R.V. Mehta |
Microscopic observation of magnetodeformational effect in magnetic nanocomposite micelles |
| 2P39 | A. Ivanov, E. Krutikova |
Statistical mechanical model of ionic ferrofluids |
| 2P40 | L. Kubisz, M. Labowski, A. Skumiel, A. Szlaferek, E. Pankowski |
Effect of temperture on electric conductivity of the PDMS ferrogel |
| 2P41 | C. Yerin |
Electro-optical phenomena in magnetic fluids |
| 2P42 | Yu.I. Dikansky, O.A. Nechaeva, A.R. Zakinyan, N.Yu. Konstantinova, S.A. Kunikin |
Structural transformations in magnetic emulsion |
| 2P43 | A. Jozefczak, A. Skumiel |
The effect of BSA surfactant layer on ultrasound attenuation and heat effect in biocompatible magnetic fluids |
| 2P44 | P. Regulska, A. Skumiel, T. Hornowski, A. Jozefczak |
Magnetic properties and anisotropy of ultrasound attenuation in the APG832 magnetic liquid |
| 2P45 | N. Tomašovičová, M. Koneracká, P. Kopčanský, M.Timko, V. Závišová, A. Vajda, K Fodor-Csorba, N. Éber |
Freedericksz transition in HAB-based ferronematics |
| 2P46 | N. Tomašovičová, M. Koneracká, P. Kopčanský, M. Timko, V. Závišová, L. Tomčo, J. Jadzyn |
The structural transition in 6CHBT-based ferronematic droplets |
| 2P47 | A. Džárová, M. Timko, A. Šprincová, P. Kopčanský, J. Kováč, M. Koneracká, M. Václavíková, I. Vávra |
Formation and magnetic properties of magnetosomes |
| 2P48 | V. Damian, D. Bica |
Assessment of magnetic liquid surface deformation by Soret effect |
| 2P49 | A. Juríková, P. Kopčanský, M. Koneracká, V. Závišová, M. Timko, L. Ivaničová |
The determination of particle size distribution in magnetic fluids using magnetorelaxometry measurements using SQUID |
| 2P50 | J. Patzke, B. Rathke, S. Will |
Dynamic light scattering on ferrofluids |
| 2P51 | P. J. Cregg, J.L. García-Palacios, P. Svedlindh |
Expressions for the linear susceptibility of magnetic nanoparticles with arbitrary exchange interaction |
| 2P52 | T. Kristóf, I. Szalai |
Magnetic properties of two dimensional dipolar fluids |
| 2P53 | Z. Máté, I. Szalai |
Heat capacities of dipolar fluids: ferromagnetic colloids |
| 2P54 | M. Jagodic, S. Gyergyek, Z. Jaglicic, D. Makovec, Z. Trontelj |
Extent of agglomeration in iron oxide ferrofluid probed by magnetic measurement |
| 2P55 | S. Dutz, W. Andrä, R. Hergt, R. Müller, Ch. Oestreich, M. Zeisberger, M. E. Bellemann |
Influence of particle clustering on the sedimentation stability of water based ferrofluids |
| 2P56 | G.V. Stepanov, Yu.L.Raikher, P.V. Melenev, A.I. Gorbunov, E.Yu. Kramarenko, E.F. Levina, E.I. Alekseeva |
Magnetoactive elastic composites: preparation and properties |
| 2P57 | Yu.L. Raikher, V.V. Rusakov |
Orientational motion of a magnetic particle in a Maxwell-Voigt fluid: Account for Brownian diffusion |
| 2P58 | V. Nica, H.M. Sauer, J. Embs, R. Hempelmann |
Calorimetric method for the determination of Curie temperatures of magnetic nanoparticles in dispersion |
| 2P59 | A. Ivanov, A. Pshenichnikov |
Transversal susceptibility of magnetic fluid |
| 2P60 | M. Motozawa, Y. Iizuka, T. Sawada | Experimental measurement of ultrasonic propagation velocity and attenuation in magnetic fluids |
| 2P61 | P.C. Fannin | On the significance of the area under the after-effect function curve of a magnetic fluid |
| 2P62 | G. Vaidyanathan, S. Sendhilnathan, R. Arulmurugan | Study of thermal and magnetic properties of Co1-xZnxFe2O4 nanoparticles by co-precipitation method |
| 2P63 | S. Tejwani, K. A. Smith, T.A. Hatton | Evaluation of chemical potential and observation of anisotropic magnetization of nonmagnetic species immersed in magnetic fluids |
| 2P64 | E.M. Claesson, B.H. Erné, I.A. Bakelaar, B.W.M. Kuipers, A.P. Philipse | Permanent magnetic moment of colloidal silica spheres with a cobalt ferrite shell |
| 2P65 | L. Iskakova, A. Zubarev | Optical birefringence in ferrofluids |
| 2P66 | L. Iskakova, A. Zubarev | Internal structures in two dimentonal ferrofluids |
| 2P67 | K. Katano, H. Morimoto, T. Maekawa | Magnetic characteristics of clusters formed by ferromagnetic particles |
| 2P68 | V. Korolyev, I. Arefyev, A. Ramazanova | Thermodynamic of magnetic nanosystems |
| 2P69 | A. Ramazanova, V. Korolyev, I. Arefyev, A. Blinov | Magnetocaloric effect and heat capacity of aqueous suspensions gadolinium ferrite |
| 2P70 | C. Musil, J. Štelina, M. Timko, P. Kopčanský | The generation of defined nanoparticle structure in a magnetic field |
| 2P71 | B.W.M. Kuipers, I.A. Bakelaar, M. Klokkenburg, B.H. Erné | Complex Magnetic Susceptibility Setup for the Extremely Low Frequency Range |
TOPIC 3: Magnetic Fluids Theory and Numerical Modeling |
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| Number | Authors | Title |
| 3P1 | J.J. Cerda, S. Kantorovich, C. Holm | Ferrofluid monolayers: simulations and theory: Part-I. |
| 3P2 | A.F. Pshenichnikov, A.V. Razumkov | Initial susceptibility of concentrated magnetic fluid: numerical simulation |
| 3P3 | T. Inagaki, H. Kikura, Y. Ido, M. Aritomi | Real observations and numelical simulations of cluster formation of nonmagnetic particles in magnetic fluids |
| 3P4 | K. Zimmermann, V.A. Naletova, I. Zeidis, V.A. Turkov, E. Kolev, S.A. Kalmykov | Calculation of a magnetizable worm deformation in a magnetic field |
| 3P5 | K. Nandy, S. Chaudhuri, R. Ganguly, I.K. Puri | Field-guided transport of magnetic microspheres in a mems-based biosensor – analytical approach |
| 3P6 | A. Engel, C. Müller, T. John | Rectification of thermal fluctuations in ferrofluids |
| 3P7 | M. Li, X. R. Zhang, H. Yamaguchi | Diffusion-parabolized theory and numerical analysis of the lamilar boundary layer of magnetic fluid |
| 3P8 | D.Y. Kim, M.K. Park, R. Yamane | Numerical simulation of the flow in ferrofluid seal using an arbitrary lagrangian-eulerian finite element method |
| 3P9 | A. Mukherjee, B. Mukherjee | Solution multiplicity and stability for sheared nematics under external magnetic fields |
| 3P10 | F. Chen, K.A. Smith, T.A. Hatton | A dynamic buildup model of magnetic particle accumulation on single wires in high gradient magnetic separation |
| 3P11 | M.C. Heine, J. de Vicente, D.J. Klingenberg | Heat transfer simulations in confined magnetic fluids |
| 3P12 | C. Scherer | Rotational dynamics of superparamagnetic particles and their magnetic moments in polydisperse ferrofluids |
| 3P13 | A.O. Ivanov, S.S. Kantorovich, E.S. Pyanzina | Scaling behaviour of the structure factor of chain-forming ferrofluids at low wave vectors |
TOPIC 8: Biomedical Applications |
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| Number | Authors | Title |
| 8P3 | P.P. Macaroff, E.S.C. Morani, E.C.D. Lima, P.C. Morais, A.C. Tedesco | Preparation and characterization of a magnetic lipidic low density emulsion (MLDE) as a promising candidate for cancer treatment |
| 8P4 | F.L. Primo, A.R. Simioni, M.M.A. Rodrigues, P.C. Morais, A.C. Tedesco | Photophysicals and photobiologicals assays in the citrate-magnetic-nanoemulsion as new synergical nano-drug delivery system (NDDS) |
Poster session 2: Thursday, July 26th, 2007 |
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TOPIC 4: Heat and Mass Transfer |
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| Number | Authors | Title |
| 4P1 | M.S. Krakov, I.V. Nikiforov | 3D thermomagnetic convection structures in a porous cube. I. Heating from side wall |
| 4P2 | A. Skumiel, A. Jozefczak, A. Szlaferek, W. Kowalski, M. Timko, P. Kopcansky, M. Koneracka | Contribution of hysteresis loss in the hyperthermal effect in the cobalt magnetic fluid |
| 4P3 | H.L.G. Couto, F.R. Cunha | Transverse diffusion in a polydisperse dilute suspension of magnetic spheres during sedimentation |
| 4P4 | K. Tomiyama, Y. Ido | Behavior of magnetic particles in a liquid under non-uniform magnetic field and gravity |
| 4P5 | D. Zablotsky, V. Frishfelds, E. Blums | Numerical investigation of thermomagnetic convection in heated cylinder under the magnetic field of a solenoid |
| 4P6 | M.T. López-López, G. Vertelov, Ch. Pradille, P. Kuzhir, G. Bossis | Oscillating squeeze flow of suspensions of magnetic wires in the presence of magnetic fields |
| 4P7 | M. Hodenius, M. De Cuyper, G. Ivanova, M. Baumann, T. Schmitz-Rode | Induction heating of aqueous magnetic fluids |
| 4P8 | A. Bozhko, G. Putin, A. Jafari, T. Tynjälä | On advisability of ferrocolloid magnetoconvection experiments in microgravity conditions |
| 4P9 | A. Bozhko, Yu. Bratukhin, G. Putin | On concentration, induction and magneto-viscous effects in ferrofluid convection in spherical cavity |
| 4P10 | A. Ryskin, H. Pleiner | Effects of sedimentation in the thermal convection of ferrofluids |
| 4P11 | M. Drzik, J. Chlpík, P. Kopcansky, M. Timko, A. Dzarova | Observation of magnetic fluids thermodiffusion by thermal lens interference visualization |
| 4P12 | A. Mezulis, E. Blums, G. Kronkalns | Magnetoconvective heat transfer from a cylinder under the effect of a nonuniform magnetic field |
| 4P13 | G. Vaidyanathan, R. Sekar, R. Hemalatha | Soret-driven thermohaline convection in the presence of dust particles heated and soluted from below |
| 4P14 | R. Sekar, G. Vaidyanathan, R. Hemalatha | Effect of horizontal thermal gradient on ferro-convection |
| 4P15 | S. van Vaerenbergh, M. Hennenberg | Determination of the thermo and magneto phoresis by the dissipative function: part II, couplings with polarisation |
TOPIC 5: Rheological Properties of Magnetic Fluids |
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| Number | Authors | Title |
| 5P1 | S.I. Alves, M.R Alcântara, A.M. Figueiredo Neto | The effect of fumed silica on the rheology of Magnetorheological suspensions |
| 5P2 | L.M.Pop, S. Odenbach | Capillary viscosimetry on ferrofluids |
| 5P3 | A. Mukherjee, M.S. Korlie, B.G. Nita, J.G. Stevens, P.A. Yecko | Analysis of flows of ferrofluids under simple shear |
| 5P4 | M. Zubieta, H. Urreta, M.J. Elejabarrieta, M.M. Bou-Ali | Model of the behaviour of magnetorheological fluids to analyse the preyield |
| 5P5 | M.S. Kim, B.J. Park, H.J. Choi, J.H. Kim | Rheological response of magnetic carbonyl iron microbeads dispersed in polymer solution |
| 5P6 | D.V. Makarov, A.N. Zakhlevnykh | Shear and magnetic field influence on ferronematic |
| 5P7 | A. Guerrero-Sanchez, T. Lara-Ceniceros, E. Jimenez-Regalado, M. Rasa, U.S. Schubert | Ionic liquids as carriers of magnetorheological fluids |
| 5P8 | M. Watanabe, H. Ibe, A. Aki, Y. Nagaoka, H. Morimoto, T. Maekawa | Mixing of magnetic and nonmagnetic fluids in a microchannel under homogeneous magnetic fields |
| 5P9 | H. Yamaguchi, K. Matsumura, T. Murakami | Flow control with magnetic viscoelastic materials |
| 5P10 | A.V. Lebedev, A.F. Pshenichnikov | Low-temperature rheology of concentrated magnetic fluids |
| 5P11 | H. Pleiner, S. Bohlius, A. Ryskin, H.R. Brand | Rheology of ferrofluids, ferronematics, and ferrogels |
| 5P12 | F.Vereda, J. De Vicente, R. Hidalgo-Álvarez | Rheology of ferrofluids under strong confinement |
| 5P13 | H. Urreta, M. Zubieta, M. Arriaga, M. Bou-Ali | Analytical study of hydrostatic journal bearings behaviour, lubricated with ferrofluids and magnetorheological fluids |
| 5P14 | G. Vaidyanathan, S. Sendhilnathan, R. Arulmurugan | Effect of magnetic field on viscosity of Co-Zn ferrofluid: magneto viscosity studies |
| 5P15 | J. de Vicente, J. Ramirez | Rheology of confined magnetic colloids under oscillatory shear flow: Effect of friction between particles |
TOPIC 6: Free Surface Phenomena and Ferrohydrodynamics |
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| Number | Authors | Title |
| 6P1 | I. Selezov | An extended wave model of magnetofluid dynamics |
| 6P2 | D.M. Ramos, F.R. Cunha | A study on magnetic convection in a narrow rectangular cavity |
| 6P3 | R. Yamane, K. Kamioka, M.K. Park | Magnetic fluid flow induced by non-uniform rotating magnetic field |
| 6P4 | S. Bohlius, H. Pleiner, H.R. Brand | Nonlinear analysis of the Rosensweig instability in isotropic magnetic gels |
| 6P5 | O. Lavrova, V. Polevikov, L. Tobiska | Instability of a magnetic fluid drop in a capillary: a numerical study |
| 6P6 | V.G. Bashtovoi, V.K. Polevikov, A.E. Suprun, A.V. Stroots, S.A. Beresnev | The effect of magnetophoresis and brownian diffusion on levitation of bodies in magnetic fluid |
| 6P7 | V.G. Bashtovoi, V.K. Polevikov, A.E. Suprun, A.M. Algadal | The effect of magnetophoresis and brownian diffusion on characreristics of magnetic fluid seal |
| 6P8 | V. Bashtovoi, A. Reks, P. Kuzhir, P. Reks |
Eqiulibrium of magnetic fluid drop in wedge-shaped channel |
| 6P9 | Y. Mizuta |
Interface magnetic field analysis for free surface phenomena of magnetic fluid |
| 6P10 | M. Hennenberg, B. Weyssow, S. Slavtchev |
Linear stationary coupling between the Rayleigh-Benard-Marangoni thermal instability and the Cowley Rosensweig static one |
| 6P11 | A. Ryskin, H. Pleiner |
Magnetic field driven instability in stratified ferrofluids |
| 6P12 | C.Y. Wen, T.K. Liang, C.Y. Chen |
Effects of the sweep rate of the applied field on the labyrinthine instability of a miscible magnetic drop |
| 6P13 | C.Y. Wen, R.T. Tsai |
Natural convection of magnetic fluid in a rectangualr Hele-Shaw cell of different aspect ratios |
| 6P14 | S. Sudo, H. Wakuda, T. Yano |
The dynamic behavior of magnetic fluid including magnet in moving container |
| 6P15 | K. Zimmermann, V.A. Naletova, I. Zeidis, V.A. Turkov, D.A. Pelevina |
Surface of a magnetic fluid containing magnetizable bodies in an applied uniform magnetic field |
| 6P16 | V.A. Naletova, V.A. Turkov, D.A. Pelevina, S.A. Kalmykov |
Hydrodynamics of a magnetic fluid layer in a traveling magnetic field |
| 6P17 | V.A. Naletova, V.V. Kiryushin, A.G. Reks, E. Suvchuk |
Hysteresis of a shape of a magnetic fluid volume near a line conductor |
| 6P18 | T. Kuwahara, F. De Vuyst, H. Yamaguchi |
Flow regime classification in air-magnetic fluid two-phase flow |
| 6P19 | C.H. Chen, C.Y. Chen |
Motion of a magnetic drop through a narrow passage |
| 6P20 | C. Groh, R. Richter, I. Rehberg, F.H. Busse |
Reorientation of hexagonal pattern at the tilted field instability: hexagon-flip |
| 6P21 | B.L. Smorodin |
Parametric excitation of ferrofluid convective instability |
| 6P22 | B.L. Smorodin, M. Shliomis, P. Kaloni |
Influence of a horizontal magnetic field on free ferrofluid convection in a vertical slot |
| 6P23 | P.N. Kaloni |
Convective instability of magnetic fluids with internal rotations |
| 6P24 | H.L.G. Couto, T.F. Oliveira, F.R. Cunha | On the application of a three-dimensional boundary integral method to compute distortion of magnetic drops |
| 6P25 | G. Vaidyanathan, A. Anbagi, S. Senthilnathan, N.D. Senthil Ram, G. Meenakshi | Ferro convective instability in fluids saturating anisotropic porous medium of continuously varying permeability |
| 6P26 | C.E. Nanjundappa, I.S. Shivakumara | Convective instability in a ferrofluid saturated porous layer with internal heat generation |
| 6P27 | H. Knieling, R. Richter | Temporal evolution of ferrosolitons in the bistable regime of the Rosensweig instability |
| 6P28 | H. Knieling, R. Richter, I. Rehberg, G. Matthies, A. Lange | Measuring the growth rate at the Rosensweig instability |
| 6P29 | C.Y. Chen, H.C. Lin, W.K. Tsai | Motion of miscible magnetic fluids in a vertical capillary tube |
TOPIC 7: Technical Applications |
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| Number | Authors | Title |
| 7P1 | A. Radionov, A. Gurski, A. Vinogradov, A. Kazakutsa | The characteristics of magnetic fluid seal assembly for chemical production |
| 7P2 | ?.V. Radionov, I.V. Kosarev | Tests of magnetic fluid seals of mining combine turning reduction gear |
| 7P3 | M.S. Krakov, I.V. Nikiforov | Influence of the shaft rotation on the magnetic fluid seal pressure drop |
| 7P4 | S. Jakabsky, M. Lovas, A. Mockovciakova, S.Hredzak | Optimisation of parameters ferrohydrostatic separation of materials |
| 7P5 | N.C. Popa, A. Siblini, J.J. Rousseau, D. Jamon | Magnetic fluids in Pyramidal network of gas flow meters |
| 7P6 | Y. Yamashita, N. Umehara, Y. Zhu | Development of magic polishing simulator |
| 7P7 | D. Borin, G. Stepanov, V. Mikhailov, A. Gorbunov | The damping device based on magnetoactive elastomer |
| 7P8 | Y.W. Yun, M.K. Park |
A study on the path control of truck-trailer system using a magneto-rheological hitch angle brake device |
| 7P9 | L. Mao, H. Koser |
Overcoming the diffusion barrier: ultra-fast micro-scale mixing via ferrofluids |
| 7P10 | S. Banerjee, A. Mukhopadhyay, S. Sen, R. Ganguly |
Optimizing thermomagnetic convection for electronics cooling |
| 7P11 | Y. Ido, T. Inagaki, N.Umehara |
Numerical simulations of distributions of magnetic and nonmagnetic particles in MAGIC fluids |
| 7P12 | V.A. Chernobai, N.V. Zenko, V.B. Samoilov |
Experimental study of vibration-isolating magnetofluid supports |
| 7P13 | V.A. Chernobai, A.V. Lukashevich, L.V. Suloeva |
Study of magnetic fluid flow in a plain bearing |
| 7P14 | V. Chernobai, S. Pahirnitskaya |
Experimental study of heat releases in a magnetofluid seal |
| 7P15 | D. Li, H. Cui, Z. Zhang |
Properties research on level sensor based on magnetic fluid |
| 7P16 | Y. Mitamura, S. Arioka, D. Sakota, K. Sekine |
Application of a magnetic fluid seal to rotary blood pumps |
| 7P17 | D. Li, X. He, R. Hao |
The study on magnetic fluid static seal of large diameter flange |
| 7P18 | K. Shimada, Y. Zheng, K. Ido |
High electric conduction sensitive rubber utilizing MCF (magnetic compound fluid) |
| 7P19 | Y. J. Nam, S.H. Jeon, M.K. Park, R. Yamane |
Position feedback control of a nonmagnetic body levitated in magnetic fluid |
| 7P20 | Y.J. Nam, S. H. Jeon, M.K. Park, R. Yamane |
Dynamic characteristics of a passively levitated nonmagnetic body in magnetic fluid |
| 7P21 | R.P. Bhatt |
Smart rotional speed sensors and it’s applications |
| 7P22 | K. Matsumura, H. Yamaguchi, T. Murakami |
Flow control with magnetic viscoelastic materials |
| 7P23 | L. Tonggang, L. Shujin, Y. Zhiyi |
Application of magnetic fluids in ferrography |
| 7P24 | V.K. Jain , R.P. Pant | Applications of Ferrofluids in Micro Electro Mechanical Systems (MEMS) Technology |
TOPIC 8: Biomedical Applications |
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| Number | Authors | Title |
| 8P1 | M. Racuciu, D.E. Creanga | Effects of ?-cyclodextrin coated magnetic nanoparticles on photosynthesis process in cereal plants |
| 8P2 | M. Racuciu, Z. Olteanu, D. Creanga | Oxidative stress induced by magnetic fluid in vegetal organisms |
| 8P5 | L.F. Gamara, G.E.S. Brito, M.A. Momesso, R.C. Ruiz, S.M. Carneiro, D.M. Escriba, E. Amaro Jr. | Quantitative EPR analysis of cells labeled with anionic iron oxide nanoparticles |
| 8P6 | M. Tondra | Integrated detection of 3-dimensional volumes of ferrofluid labels in lateral flow biosensors |
| 8P7 | V. Davariya, A.K. Vala, R. Desai, R.V. Upadhyay | A novel method to extract cr impurity using facultative marine aspergillus niger and magnetic fluid |
| 8P8 | A.K. Vala, R. Desai, R.V. Upadhyay, R.V. Mehta | A possible mechanism to control the spread and growth of facultative marine fungus aspergillus niger using magnetic fluid |
| 8P9 | M. Koneracká, M. Múčková, V. Závišová, N. Tomašovičová, P. Kopčanský, M. Timko | Encapsulation of anticancer drug and magnetic particles in the biodegradable polymer |
| 8P10 | O. Mykhaylyk, N. Matoussevitch, H. Bönnemann, C. Plank | Cobalt versus magnetite nanoparticles: cell toxicity and efficiency as components of gene delivery vectors in vitro |
| 8P11 | C. Mihai, V. Artenie, P. Rottinberg, D.E. Creanga, P. Tupu, M. Racuciu | The response of mammalian tissues to magnetic fluid and electromagnetic exposure |
| 8P12 | A. Poiata, D.E. Creanga, A. Airinei, P.Tupu, M. Racuciu | The study of some human pathogens to magnetic fluids and radiofrequency wave exposure |
| 8P13 | S. Dunca, A. Florea, D.E. Creanga | The possible side effects on the bacterial microflora of magnetic fluids utilized in medicine |
| 8P14 | Al. Manoliu, L. Oprica, Z. Olteanu, D.E. Creanga | Magnetic fluid - possible biotechnological tool in conducting the growth of Chaetomium globosum fungus |
| 8P15 | M. Sincai, D. Ganga, M. Ganga, D. Argherie, D. Bica | The antitumor effects of the biocompatible magnetic fluids in some recidivant bitch mammary adenocarcinoma |
| 8P16 | R. Fabis | Synthesis of porous silica particles for nucleic acid purification |
TOPIC 9: Other Related Fields |
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| Number | Authors | Title |
| 9P1 | M. Matik, M. Lovás, S. Čuvanová, M. Vaclavíková | Microwave hydrothermal synthesis of maghemite nano-particles as a precursor of magnetic fluids |
| 9P2 | P.J. Cregg, J.L. García-Palacios, P. Svedlindh | Low-field susceptibility of classical heisenberg chains with arbitrary nearest neighbour exchange interactions |
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