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9 Magnetic measurement methods to probe nanoparticle–matrix interactions

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Magnetic Hybrid-Materials
Ein Kapitel aus dem Buch Magnetic Hybrid-Materials
© 2021 Walter de Gruyter GmbH, Berlin/Boston

© 2021 Walter de Gruyter GmbH, Berlin/Boston

Kapitel in diesem Buch

  1. Frontmatter i
  2. Preface v
  3. Contents vii
  4. List of contributing authors xxi
  5. 1 Magneto-mechanical coupling of single domain particles in soft matter systems 1
  6. 2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties 27
  7. 3 Magnetic hybrid materials in liquid crystals 55
  8. 4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties 79
  9. 5 Studies about the design of magnetic bionanocomposite 109
  10. 6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems 133
  11. 7 Functionalization of biopolymer fibers with magnetic nanoparticles 167
  12. 8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices 195
  13. 9 Magnetic measurement methods to probe nanoparticle–matrix interactions 225
  14. 10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis 257
  15. 11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy 271
  16. 12 Magnetic particle imaging of particle dynamics in complex matrix systems 297
  17. 13 Rotational dynamics of magnetic nanoparticles in different matrix systems 323
  18. 14 Dielectric behaviour of magnetic hybrid materials 351
  19. 15 Magneto-mechanical properties of elastic hybrid composites 369
  20. 16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites 391
  21. 17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography 411
  22. 18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations 437
  23. 19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity 459
  24. 20 Internal structures and mechanical properties of magnetic gels and suspensions 481
  25. 21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers 497
  26. 22 Modeling and theoretical description of magnetic hybrid materials—bridging from meso- to macro-scales 521
  27. 23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations 537
  28. 24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data 565
  29. 25 Multiphysics modeling of porous ferrogels at finite strains 597
  30. 26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems 625
  31. 27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems 653
  32. 28 Magnetic hybrid materials interact with biological matrices 681
  33. 29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications 739
  34. Index 769
Heruntergeladen am 8.5.2026 von https://www.degruyterbrill.com/document/doi/10.1515/9783110569636-009/html?lang=de
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