LEADER 14520nam 22018015 450 001 996445849503316 005 20211027022714.0 010 $a3-11-056963-9 035 $a(CKB)4970000000171265 035 $a(DE-B1597)488554 035 $a(DE-B1597)9783110569636 035 $aEBL7015207 035 $a(AU-PeEL)EBL7015207 035 $a(EXLCZ)994970000000171265 100 $a20211027h20212021 fg 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aMagnetic Hybrid-Materials $eMulti-scale Modelling, Synthesis, and Applications /$fed. by Stefan Odenbach 210 1$aBerlin ;$aBoston : $cDe Gruyter, $d[2021] 210 4$d©2021 215 $a1 online resource (XXX, 781 p.) 300 $aDescription based upon print version of record. 311 $a3-11-056877-2 327 $tFrontmatter -- $tPreface -- $tContents -- $tList of contributing authors -- $t1 Magneto-mechanical coupling of single domain particles in soft matter systems -- $t2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties -- $t3 Magnetic hybrid materials in liquid crystals -- $t4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties -- $t5 Studies about the design of magnetic bionanocomposite -- $t6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems -- $t7 Functionalization of biopolymer fibers with magnetic nanoparticles -- $t8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices -- $t9 Magnetic measurement methods to probe nanoparticle-matrix interactions -- $t10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis -- $t11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy -- $t12 Magnetic particle imaging of particle dynamics in complex matrix systems -- $t13 Rotational dynamics of magnetic nanoparticles in different matrix systems -- $t14 Dielectric behaviour of magnetic hybrid materials -- $t15 Magneto-mechanical properties of elastic hybrid composites -- $t16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites -- $t17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography -- $t18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations -- $t19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity -- $t20 Internal structures and mechanical properties of magnetic gels and suspensions -- $t21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers -- $t22 Modeling and theoretical description of magnetic hybrid materials-bridging from meso- to macro-scales -- $t23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations -- $t24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data -- $t25 Multiphysics modeling of porous ferrogels at finite strains -- $t26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems -- $t27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems -- $t28 Magnetic hybrid materials interact with biological matrices -- $t29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications -- $tIndex 330 $aExternally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. 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