Saturation magnetisation as an indicator of the disintegration of barium hexaferrite nanoplatelets during the surface functionalisation.


Journal

Scientific reports
ISSN: 2045-2322
Titre abrégé: Sci Rep
Pays: England
ID NLM: 101563288

Informations de publication

Date de publication:
19 Jan 2023
Historique:
received: 01 12 2022
accepted: 18 01 2023
entrez: 19 1 2023
pubmed: 20 1 2023
medline: 20 1 2023
Statut: epublish

Résumé

Barium hexaferrite nanoplatelets (BHF NPLs) are permanent nanomagnets with the magnetic easy axis aligned perpendicular to their basal plane. By combining this specific property with optimised surface chemistry, novel functional materials were developed, e.g., ferromagnetic ferrofluids and porous nanomagnets. We compared the interaction of chemically different phosphonic acids, hydrophobic and hydrophilic with 1-4 phosphonic groups, with BHF NPLs. A decrease in the saturation magnetisation after functionalising the BHF NPLs was correlated with the mass fraction of the nonmagnetic coating, whereas the saturation magnetisation of the NPLs coated with a tetraphosphonic acid at 80 °C was significantly lower than expected. We showed that such a substantial decrease in the saturation magnetisation originates from the disintegration of BHF NPLs, which was observed with atomic-resolution scanning transmission electron microscopy and confirmed by a computational study based on state-of-the-art first-principles calculations. Fe K-edge XANES (X-ray absorption near-edge structure) and EXAFS (Extended X-ray absorption fine structure) combined with Fourier-transformed infrared (FTIR) spectroscopy confirmed the formation of an Fe-phosphonate complex on the partly decomposed NPLs. Comparing our results with other functionalised magnetic nanoparticles confirmed that saturation magnetisation can be exploited to identify the disintegration of magnetic nanoparticles when insoluble disintegration products are formed.

Identifiants

pubmed: 36658162
doi: 10.1038/s41598-023-28431-4
pii: 10.1038/s41598-023-28431-4
pmc: PMC9852462
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1092

Subventions

Organisme : Javna Agencija za Raziskovalno Dejavnost RS
ID : P2-0089
Organisme : Javna Agencija za Raziskovalno Dejavnost RS
ID : P1-0112
Organisme : Javna Agencija za Raziskovalno Dejavnost RS
ID : P2-0412
Organisme : Javna Agencija za Raziskovalno Dejavnost RS
ID : P1-0192
Organisme : Horizon 2020 Framework Programme
ID : 899285
Organisme : Horizon 2020 Framework Programme
ID : 730872

Informations de copyright

© 2023. The Author(s).

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Auteurs

Darja Lisjak (D)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia. darja.lisjak@ijs.si.

Iztok Arčon (I)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia.
University of Nova Gorica, 5000, Nova Gorica, Slovenia.

Matic Poberžnik (M)

CNR-IOM, Democritos National Simulation Center, Istituto Officina dei Materiali, c/o SiSSA, 34136, Trieste, Italy.

Gabriela Herrero-Saboya (G)

CNR-IOM, Democritos National Simulation Center, Istituto Officina dei Materiali, c/o SiSSA, 34136, Trieste, Italy.

Ali Tufani (A)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia.

Andraž Mavrič (A)

University of Nova Gorica, 5000, Nova Gorica, Slovenia.

Matjaz Valant (M)

University of Nova Gorica, 5000, Nova Gorica, Slovenia.

Patricija Hribar Boštjančič (PH)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia.
Jožef Stefan International Postgraduate School, 1000, Ljubljana, Slovenia.

Alenka Mertelj (A)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia.

Darko Makovec (D)

Jožef Stefan Institute, 1000, Ljubljana, Slovenia.

Layla Martin-Samos (L)

CNR-IOM, Democritos National Simulation Center, Istituto Officina dei Materiali, c/o SiSSA, 34136, Trieste, Italy.

Classifications MeSH