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poster

MMM 2022

November 07, 2022

Minneapolis, United States

Structural and Magnetic Properties of Co1.5Mo0.5FeAl Alloy

Materials showing half-metallic band structure with a high Curie temperature and moderate magnetization are attractive for spin-transport-based devices. Some Heusler compounds exhibit these features and have attracted much attention. We have synthesized one such compound, Co1.5Mo0.5FeAl, using arc melting and high vacuum annealing. The arc-melted ingot was annealed at 600 oC for 48 hours. The room temperature x-ray diffraction suggests that the sample has cubic crystal structure with A2 type disorder. The temperature dependence of magnetization measured at 1 kOe shows a very high Curie temperature of about 950 K. There is an anomaly in the M(T) curve near 750 K, Fig.1. The sample exhibits a moderate saturation magnetization of 68 emu/g at room temperature. These results show that Co1.5Mo0.5FeAl has potential for high temperature magnetic and spintronic applications. Here, we will also discuss the electronic and magnetic properties of cubic Co1.5Mo0.5FeAl predicted by our first principles calculations. This research is supported by the National Science Foundation (NSF) under Grant Numbers 2003828 and 2003856 via DMR and EPSCoR.

Next from MMM 2022

Effect of substitution of 3d, 4d and 5d elements on structural, electronic, magnetic properties and XMCD spectra of Co based Full Heusler alloys: A DFT Study
poster

Effect of substitution of 3d, 4d and 5d elements on structural, electronic, magnetic properties and XMCD spectra of Co based Full Heusler alloys: A DFT Study

MMM 2022

Rajeev Dutt and 1 other author

07 November 2022

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