Magnetic Nanostructures

This thesis reports the results of studies conducted at LAboratory for Molecular Magnetism (LA.M.M.) of the University of Firenze concerning the synthesis and characterization of rare-earth free nanostructured materials for permanent magnet applications. Ferrite-based magnetic materials doped with t...

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Huvudupphov: LOTTINI, ELISABETTA
Materialtyp: Online
Språk:engelska
Utgiven: Firenze University Press 2022
Länkar:ONIX_20220531_9788864535753_670
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author LOTTINI, ELISABETTA
author_browse LOTTINI, ELISABETTA
author_facet LOTTINI, ELISABETTA
author_sort LOTTINI, ELISABETTA
collection Directory of Open Access Books
description This thesis reports the results of studies conducted at LAboratory for Molecular Magnetism (LA.M.M.) of the University of Firenze concerning the synthesis and characterization of rare-earth free nanostructured materials for permanent magnet applications. Ferrite-based magnetic materials doped with transition metal ions are studied with particular attention to the correlation between their magnetic properties and nanostructures. Firstly, the magnetic behaviour of single-phase ferrites nanocrystals with enhanced anisotropy was analysed, in order to under stand the correlation between the final properties and particle size, shape, crystallinity, composition, etc. Then, hybrid bi magnetic core|shell nanoparticles were prepared focusing on the aftermath and required conditions of exchange-coupling establishment between the two moieties.
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spelling doab-20.500.12854ir-825642025-03-15T13:24:07Z Magnetic Nanostructures LOTTINI, ELISABETTA This thesis reports the results of studies conducted at LAboratory for Molecular Magnetism (LA.M.M.) of the University of Firenze concerning the synthesis and characterization of rare-earth free nanostructured materials for permanent magnet applications. Ferrite-based magnetic materials doped with transition metal ions are studied with particular attention to the correlation between their magnetic properties and nanostructures. Firstly, the magnetic behaviour of single-phase ferrites nanocrystals with enhanced anisotropy was analysed, in order to under stand the correlation between the final properties and particle size, shape, crystallinity, composition, etc. Then, hybrid bi magnetic core|shell nanoparticles were prepared focusing on the aftermath and required conditions of exchange-coupling establishment between the two moieties. 2022-06-02T04:13:09Z 2022-06-02T04:13:09Z 2022-05-31T10:28:18Z 2017 book ONIX_20220531_9788864535753_670 OCN: 1235843765 2612-8020 https://library.oapen.org/handle/20.500.12657/55386 9788864535753 9788864535746 9788892731677 https://directory.doabooks.org/handle/20.500.12854/82564 eng Premio Tesi di Dottorato open access image/jpeg image/jpeg image/jpeg Attribution 4.0 International Attribution 4.0 International Attribution 4.0 International https://library.oapen.org/bitstream/20.500.12657/55386/1/9788864535753.pdf https://library.oapen.org/bitstream/20.500.12657/55386/1/9788864535753.pdf https://library.oapen.org/bitstream/20.500.12657/55386/1/9788864535753.pdf Firenze University Press 10.36253/978-88-6453-575-3 10.36253/978-88-6453-575-3 2ec4474d-93b1-4cfa-b313-9c6019b51b1a 9788864535753 9788864535746 9788892731677 158 Florence open access
spellingShingle LOTTINI, ELISABETTA
Magnetic Nanostructures
title Magnetic Nanostructures
title_full Magnetic Nanostructures
title_fullStr Magnetic Nanostructures
title_full_unstemmed Magnetic Nanostructures
title_short Magnetic Nanostructures
title_sort magnetic nanostructures
url ONIX_20220531_9788864535753_670
work_keys_str_mv AT lottinielisabetta magneticnanostructures