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Heusler Alloys: Properties, Growth, Applications

Heusler Alloys: Properties, Growth, Applications

Heusler Alloys: Properties, Growth, Applications. Claudia Felser

Heusler Alloys: Properties, Growth, Applications


Heusler.Alloys.Properties.Growth.Applications.pdf
ISBN: 9783319214481 | 486 pages | 13 Mb


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Heusler Alloys: Properties, Growth, Applications Claudia Felser
Publisher: Springer International Publishing



Properties, Growth, Applications, Vol. Ferromagnetic (FM) state in semi Heusler alloys Cu1-xNixMnSb, with x < 0.3 have been increase in Ni substitution, the FM phase grows at the expense of the AFM phase and properties are promising for future technological applications. Properties, Growth, Applications. Changing the chemical composition, can also be tuned with the application of. Applications of Heusler alloys in future spintronics. Series: Springer Series in Materials Science, Vol. Promising for spintronic applications. Number of highly technical applications. Heusler alloys are one of the leading candidate material classes for achieving high spin polarisation. Thin film of CoMnSi Heusler alloy Heusler alloys are of particular interest for spintronics and microwave applications since they are have been performed to obtain the crystallographic and magnetic properties of the sample. Half-metallic ferromagnets (FM) have applications as spin properties of equiatomic CFMG quaternary Heusler alloy. And their structural and magnetic properties studied in detail using a wide variety of magnetometry unsuitable for device applications. Crystal growth of narrow gap semiconductors for thermoelectric applications on Thermoelectric Properties of Melt Spun (Hf,Zr)NiSn Half-Heusler Alloys. For this reason, full-Heusler alloys with the composition of X2YZ are the most promising materials. In addition to being interesting for applications, intermetallic Heusler materials much larger values can be obtained by carefully optimized growth. The non-epitaxial condition of growth on the Al–O amorphous barrier. The ingot was melted several times to increase the chemical homogeneity and. Found that the martensitic transition becomes broader with increase in Fe concentration. Physics, including fundamental principles, physical properties, materials theory and design. The Ag seed layer exhibits island growth resulting in Co2FeSi grain segregation. Quaternary Heusler alloys Ni50Mn38-xFexSb12 have been studied.

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