Magnetic Characterization Techniques for Nanomaterials /

Sixth volume of a 40 volume series on nanoscience and nanotechnology, edited by the renowned scientist Challa S.S.R. Kumar. This handbook gives a comprehensive overview about Magnetic Characterization Techniques for Nanomaterials. Modern applications and state-of-the-art techniques are covered and m...

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Bibliographic Details
Corporate Authors: SpringerLink (Online service)
Group Author: Kumar, C. S. S. R. (Challa S. S. R.) (Editor)
Published: Springer Berlin Heidelberg : Imprint: Springer,
Publisher Address: Berlin, Heidelberg :
Publication Dates: 2017.
Literature type: eBook
Language: English
Subjects:
Online Access: http://dx.doi.org/10.1007/978-3-662-52780-1
Summary: Sixth volume of a 40 volume series on nanoscience and nanotechnology, edited by the renowned scientist Challa S.S.R. Kumar. This handbook gives a comprehensive overview about Magnetic Characterization Techniques for Nanomaterials. Modern applications and state-of-the-art techniques are covered and make this volume an essential reading for research scientists in academia and industry.
Carrier Form: 1 online resource(X,566pages): illustrations
ISBN: 9783662527801
Index Number: T174
CLC: TB383
Contents: Rotational anisotropy nonlinear harmonic generation -- Magnetic rotational spectroscopy for probing rheology of nanoliter droplets and thin films -- Iron oxide nanoparticle-based MRI contrast agents; characterization and in vivo use -- Nonlinear non-equilibrium simulations of magnetic nanoparticles -- Magnetic force microscopy characterization of magnetic nanowires and nanotubes -- Characterization of magnetism in gold nanoparticles -- Magnetic force microscopy -- Characterization of magnetic hyperthermia in magnetic nanoparticles -- In situ Lorentz microscopy and electron holography magnetization studies of ferromagnetic focused electron beam induced nanodeposits -- Neutron reflectivity to characterize nano-structured films -- Characterization of magnetism in core shell nanoparticles -- Characterization of ferromagnetic bimetallic nanomaterials using electron microscopy -- Magnetic characterization of nanodendritic platinum -- Magneto-optical (MO) characterization tools for chemically prepared magnetic nanomaterials -- Relaxometric characterization of magnetic nanoparticles used as magnetic-resonance-imaging (MRI) contrast agents.