Role of carbon in enhancing the magnetization of MnBi: an experimental and theoretical study
ORAL
Abstract
MnBi and MnBi-based materials have been investigated as prospective rare-earth-free permanent magnets with moderate energy product. We have synthesized Mn55Bi45 and Mn55Bi45C samples using arc melting and high-vacuum annealing. The room temperature x-ray diffraction patterns indicate that both Mn55Bi45 and Mn55Bi45C crystallize in the hexagonal NiAs-type crystal structure. The Rietveld analysis of the x-ray patterns shows that the amount of Bi segregation reduces from 16 wt.% for Mn55Bi45 to 5 wt. % for Mn55Bi45C. The high-field (3T) magnetizations measured at room temperature are 61 emu/g and 66 emu/g for Mn55Bi45 and Mn55Bi45C, respectively. In addition, the carbon containing sample shows slightly higher value of the anisotropy constant as compared to that of Mn55Bi45. To understand the role of C in enhancing the magnetization of MnBi, we carried out the first-principles calculations of both stoichiometric and nonstoichiometric MnBi alloys, which suggests that the increase of magnetization in Mn55Bi45C is due to the coating of MnBi grains with C.
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Presenters
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Parashu R Kharel
South Dakota State University
Authors
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Parashu R Kharel
South Dakota State University
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Bhubnesh Lama
South Dakota School of Mines and Technology
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Matthew Flesche
South Dakota State University
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Zachary Mehlberg
South Dakota State University
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Buddhi Lamsal
South Dakota State University
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Shah Valloppilly
University of Nebraska-Lincoln, University of Nebraska
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Yue Zhou
South Dakota State University
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David J Sellmyer
University of Nebraska-Lincoln, University of Nebraska - Lincoln
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Tula Paudel
South Dakota School of Mines and Technology