Results 141 to 150 of about 9,609 (197)
Prediction of fully compensated ferrimagnetic spin-gapless semiconducting FeMnGa/Al/In half Heusler alloys. [PDF]
Zhang YJ, Liu ZH, Wu ZG, Ma XQ.
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First-principles identification of PtTiGe and PtTiPb as high-efficiency thermoelectric half-Heuslers. [PDF]
Manzoor M +7 more
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First-Principles Investigation of Zr-Based Equiatomic Quaternary Heusler Compounds Under Hydrostatic Pressure for Spintronics Applications. [PDF]
Yuan X, Liu S, Wan P, Zhang Z, Tao C.
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Heusler alloys: Past, properties, new alloys, and prospects
Progress in Materials Science, 2023Sheron Tavares +2 more
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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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New ferromagnetic Heusler alloys
Digest of INTERMAG 2003. International Magnetics Conference (Cat. No.03CH37401), 2004In this paper described about the synthesis of the magnetic shape memory alloys Ni/sub 2/FeGa, Mn/sub 2/FeSn and Co/sub 50/Ni/sub 30/Ga/sub 20/ and their characterization magnetic susceptibility, martensitic transformation, XRD, TEM were studied.
G.H. Wu, Z.H. Liu, M. Zhang
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Transport properties of Heusler compounds and alloys
Journal of Physics: Condensed Matter, 2021Abstract Heusler compounds are a large group of intermetallic compositions with versatile material properties. In recent times, they are found to be important for their practical applications in the fields of spintronics and shape memory effect.
Snehashish Chatterjee +3 more
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Heusler alloy catalysts for electrochemical CO2 reduction
The Journal of Chemical Physics, 2022Developing efficient catalysts for electrochemical CO2 reduction reaction (ECO2RR) to hydrocarbons is becoming increasingly important but still challenging due to their high overpotential and poor selectivity. Here, the famous Heusler alloys are investigated as ECO2RR catalysts for the first time by means of density functional theory calculations.
Ruikuan Xie, Zhufeng Hou, Guo-Liang Chai
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