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New magnetic compounds with Heusler and Heusler-related structures
Physical Review B, 1976Magnetic and structural properties are presented for new ferromagnetic compounds of the form ${\mathrm{Rh}}_{2}\mathrm{Mn}X$ where $X$ is Al, Ga, In, Tl, Sn, Pb, and Sb. The exchange is described in terms of competing ferromagnetic Mn-Rh-Mn interactions and antiferromagnetic Mn-Mn interactions.
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Journal of Applied Physics, 1963
The results are given of comprehensive measurements on the magnetic and crystallographic properties of the ferromagnetic Heusler alloys Cu2MnAl, Cu2MnIn, Cu2MnSn, Cu2MnGe, Au2MnAl, and the antiferromagnetic alloy Cu2MnSb. The alloys Cu2MnBi and Cu2MnGa are polyphase and the ferromagnetism may be due to binary phases present.
D. P. Oxley +2 more
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The results are given of comprehensive measurements on the magnetic and crystallographic properties of the ferromagnetic Heusler alloys Cu2MnAl, Cu2MnIn, Cu2MnSn, Cu2MnGe, Au2MnAl, and the antiferromagnetic alloy Cu2MnSb. The alloys Cu2MnBi and Cu2MnGa are polyphase and the ferromagnetism may be due to binary phases present.
D. P. Oxley +2 more
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Theory of Heusler and Full-Heusler Compounds
2015Spintronics/magnetoelectronics brought at the center of scientific research the Heusler and full-Heusler compounds, since several among them have been shown to be half-metals. In this introductory chapter we present a study of the basic electronic and magnetic properties of both Heusler families; the so-called semi-Heusler alloys like NiMnSb and the ...
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2015
This chapter is addressing the physical impact of ferromagnetic Heusler entities when approaching the nanoscale, e.g. as nanoparticles or as very small grains in magnetic shape Heusler alloys, on resulting magnetic as well as microstructural properties.
Meyer, J. +5 more
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This chapter is addressing the physical impact of ferromagnetic Heusler entities when approaching the nanoscale, e.g. as nanoparticles or as very small grains in magnetic shape Heusler alloys, on resulting magnetic as well as microstructural properties.
Meyer, J. +5 more
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2019
Half-Heusler (HH) compounds are superb thermoelectric (TE) materials due to combined features of excellent TE performances, high thermal stability, mechanical robustness, simple contact, and non-toxicity. Over the past two decades, significant improvements in TE properties have been realized in a variety of compounds.
Ran He, Hangtian Zhu, Shuo Chen
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Half-Heusler (HH) compounds are superb thermoelectric (TE) materials due to combined features of excellent TE performances, high thermal stability, mechanical robustness, simple contact, and non-toxicity. Over the past two decades, significant improvements in TE properties have been realized in a variety of compounds.
Ran He, Hangtian Zhu, Shuo Chen
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Thermoeletric Heusler Compounds
2015Thermoelectric converters for power generation aim at reducing CO\(_2\) emission via the conversion of a part of the low-grade waste heat generated by engines, industrial furnaces, gas pipes, etc. to electricity. The recovery of waste heat from the exhaust of an automotive engine, in particular, is an attractive, albeit not very efficient way for ...
Julia Krez, Benjamin Balke
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ALCHEMI for coexistent Heusler and half-Heusler phases in TiNi1.5Sn
Ultramicroscopy, 2006Abstract Atomic location by channeling-enhanced microanalysis (ALCHEMI) is an effective technique to clarify the atomic configurations in multicomponent compounds. Recent development of the theory on the characteristic X-ray emission has made ALCHEMI a more reliable and expansive technique.
Takao Morimura, Masayuki Hasaka
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Verzeichnung=Description=Inventaire ISAD(G) / HAN Katalogisierungsregeln für Archivbestände ...
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TEM observation of coexistent Heusler and half-Heusler phases in TiNi1.5Sn
Journal of Alloys and Compounds, 2006Abstract Half-Heusler compounds are considered to be a prospective material for thermoelectric conversion. The thermoelectric properties are improved and controlled by the microstructure and the atomic configuration, which are easily changed by the heat-treatments or the composition.
Takao Morimura +2 more
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