Original experimental data for the paper "Complex Spin Structure and Magnetic Phase Transition of Mn₃₋ₓFeₓSn Alloys"

DOI:10.4121/a8fc2b7d-1cb7-4499-a486-930ff5117f96.v1
The DOI displayed above is for this specific version of this dataset, which is currently the latest. Newer versions may be published in the future. For a link that will always point to the latest version, please use
DOI: 10.4121/a8fc2b7d-1cb7-4499-a486-930ff5117f96

Datacite citation style

van Dijk, Niels; Brück, Ekkes; Hanggai, H (2025): Original experimental data for the paper "Complex Spin Structure and Magnetic Phase Transition of Mn₃₋ₓFeₓSn Alloys". Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/a8fc2b7d-1cb7-4499-a486-930ff5117f96.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite

Dataset

This dataset is accompanying Hanggai's PhD thesis-chapter 7, titled "Complex Spin Structure and Magnetic Phase Transition of Mn₃₋ₓFeₓSn Alloys." It includes XRD, neutron diffraction, magnetization, Mössbauer spectroscopy, and DFT data. In this part of the work, we aimed to investigate the novel magnetocaloric materials of the Mn₃₋ₓFeₓSn type, which exhibit second-order phase transitions. In this work we mainly amid to study the magnetic properties, spin structure and spin reorientation of Mn₃₋ₓFeₓSn compounds. The dataset consists of original experimental data, with samples prepared using arc melting and melt spinning techniques. Characterization methods include X-ray diffraction (XRD), Neutron diffraction (ND), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), magnetization measurements, Mossbauer and Density functional of theory.

The dataset contains files in the following formats: .DAT, .TIF, .PNG, and .XRDML.

History

  • 2025-05-27 first online, published, posted

Publisher

4TU.ResearchData

Format

xrdml, dat, tif, png, par

Funding

  • Tailored magnetocaloric materials for magnetic heat pumps (grant code Project no. 17877 ) NWO

Organizations

TU Delft, Faculty of Applied Sciences, Department of Radiation, Science and Technology, Fundamental Aspects of Materials and Energy

DATA - under embargo

The files in this dataset are under embargo until 2025-06-23.

Reason

Currently, our work has not yet been published.