Iron-rich talc as air-stable platform for magnetic two-dimensional materials

Author:

Matković AleksandarORCID,Ludescher Lukas,Peil Oleg E.ORCID,Sharma Apoorva,Gradwohl Kevin-P.,Kratzer Markus,Zimmermann Maik,Genser Jakob,Knez DanielORCID,Fisslthaler Evelin,Gammer ChristophORCID,Lugstein Alois,Bakker Ronald J.,Romaner Lorenz,Zahn Dietrich R. T.ORCID,Hofer Ferdinand,Salvan GeorgetaORCID,Raith Johann G.,Teichert ChristianORCID

Abstract

AbstractIntrinsically magnetic layered materials – especially monolayers – suffer from the lack of ambient stability and mostly exhibit magnetic ordering only at cryogenic temperatures. These restrains impose a great challenge for the integration of two-dimensional magnetic materials into future technologies. We propose to overcome this by exploiting phyllosilicates, such as iron-rich talc. Via combined magnetic force microscopy in applied external magnetic fields, superconducting quantum interference device magnetometry, first-principle calculations, and structural analysis, we demonstrate that incorporated iron ions in talc are in a very robust high spin state, resulting in a weak ferromagnetic behavior at room temperature. Iron-rich talc can be thinned down to a monolayer, remaining fully stable under ambient conditions, and retaining magnetic properties even in monolayers. Finally, we propose iron-rich end members of the phyllosilicates as very promising platforms for air-stable magnetic monolayers.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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