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An all white magnet by combination of electronic properties of a white light emitting MOF with strong magnetic particle systems

  • A multi-component particle system was developed that combines the properties of white color, white light emission and strong magnetism on the macroscopic and microscopic scale. The system is constituted by combination of an inorganic white core with either hard or soft magnetic properties and a white light emitting MOF. The key towards this achievement is the supraparticulate character constituted by a magnetic core, of either magnetite or alpha-Fe, surrounded by titania and silica nanoparticles of a certain size in a loose structural shell-arrangement as white components and finally the white light emitting metal-organic framework (MOF) EuTb@IFP-1 as building blocks of a core-shell structure. The supraparticles are created by forced assembly of the inorganic compounds and by combining spray-drying and postsynthetic modification by solvothermal chemistry. Thereby, the gap is bridged that homogenous compounds are either strongly magnetic, white in appearance or white light emitting. The composites presented herein inherit theseA multi-component particle system was developed that combines the properties of white color, white light emission and strong magnetism on the macroscopic and microscopic scale. The system is constituted by combination of an inorganic white core with either hard or soft magnetic properties and a white light emitting MOF. The key towards this achievement is the supraparticulate character constituted by a magnetic core, of either magnetite or alpha-Fe, surrounded by titania and silica nanoparticles of a certain size in a loose structural shell-arrangement as white components and finally the white light emitting metal-organic framework (MOF) EuTb@IFP-1 as building blocks of a core-shell structure. The supraparticles are created by forced assembly of the inorganic compounds and by combining spray-drying and postsynthetic modification by solvothermal chemistry. Thereby, the gap is bridged that homogenous compounds are either strongly magnetic, white in appearance or white light emitting. The composites presented herein inherit these properties intrinsically as electronic properties. The white characteristics are based on all optical properties that enable white: light reflection, refraction, and light emission. This work shifts the paradigm that strong magnetic materials are always expected to be intrinsically dark.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Marcel T. Seuffert, Susanne WintzheimerORCiD, Maximilian Oppmann, Tim GranathORCiD, Johannes Prieschl, Anas AlrefaiORCiD, Hans-Jürgen HoldtORCiD, Klaus Müller-BuschbaumORCiD, Karl MandelORCiDGND
DOI:https://doi.org/10.1039/d0tc03473h
ISSN:2050-7526
ISSN:2050-7534
Titel des übergeordneten Werks (Englisch):Journal of materials chemistry : C, Materials for optical and electronic devices
Verlag:Royal Society of Chemistry
Verlagsort:Cambridge
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Erstveröffentlichung:04.09.2020
Erscheinungsjahr:2020
Datum der Freischaltung:14.12.2023
Band:8
Ausgabe:45
Seitenanzahl:8
Erste Seite:16010
Letzte Seite:16017
Fördernde Institution:BMBF NanoMatFutur grantFederal Ministry of Education & Research (BMBF); [03XP0149]; VW FoundationVolkswagen [94043]; DFGGerman Research; Foundation (DFG)European Commission [MA 7252/4-2, MU-1562/7-2]
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 54 Chemie / 540 Chemie und zugeordnete Wissenschaften
Peer Review:Referiert
Publikationsweg:Open Access / Bronze Open-Access
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