Results 211 to 220 of about 7,843 (256)
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Journal of Materials Science: Materials in Electronics, 2023
Hao Li +6 more
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Hao Li +6 more
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Journal of Physics: Condensed Matter, 2019
Here, we report detailed investigations of the temperature dependent (100–800 K) electronic structures of FeSi and CoSi by using a DFT+DMFT method where self-consistently calculated values of U and J are used.
P. Dutta, S. Pandey
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Here, we report detailed investigations of the temperature dependent (100–800 K) electronic structures of FeSi and CoSi by using a DFT+DMFT method where self-consistently calculated values of U and J are used.
P. Dutta, S. Pandey
semanticscholar +1 more source
Journal of Superconductivity and Novel Magnetism, 2023
Chaoqiang Mei +9 more
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Chaoqiang Mei +9 more
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Dynamic mechanical properties of FeSi alloy particles-filled magnetorheological elastomers
Polymer-Plastics Technology and Materials, 2019Magnetorheological elastomers (MREs) are known as smart materials which are mainly composed of a polymeric matrix and soft magnetic particles. In this work, FeSi particles-filled natural rubber-based MREs were investigated.
Guanxin Shi +4 more
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The regime of Hubbard correlations in FeSi
Physica B: Condensed Matter, 2002Abstract The study of DC-, low and radiofrequency AC-conductivity in combination with Hall and Seebeck coefficients and magnetic measurements have been carried out at temperatures 1.6–300 K, in magnetic field up to 12 T in the so-called Kondo-insulator compound-narrow-gap semiconductor FeSi.
V.V Glushkov +7 more
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Low temperature magnetostriction in FeSi
Journal of Magnetism and Magnetic Materials, 1986Abstract The longitudinal and transverse components of magnetostriction of the cubic B-20 type compound FeSi have been measured in the temperature range 1 to 29 K. The transverse magnetostriction is found to be positive and highly anisotropic; the longitudinal magnetostriction is negative and much smaller.
H. Klimker +3 more
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Journal of Materials Science: Materials in Electronics, 2021
Jinghui Wang, Z. Xue, S. Song, Haibo Sun
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Jinghui Wang, Z. Xue, S. Song, Haibo Sun
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Nanotechnology, 2018
Semiconductors with magnetic response at room temperature are sought for spintronics in solid-state devices. Among possible materials for this applications, the magnetic response of FeSi and doped FeSi have produced contradictory results at the nanoscale
A. Ruiz +5 more
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Semiconductors with magnetic response at room temperature are sought for spintronics in solid-state devices. Among possible materials for this applications, the magnetic response of FeSi and doped FeSi have produced contradictory results at the nanoscale
A. Ruiz +5 more
semanticscholar +1 more source
1987
Transition-metal monosilicides MnSi and FeSi show a variety of interesting magnetic and transport properties. They both crystallize in a cubic structure (space group P213) in which magnetic atoms are located at displaced face centered positions. MnSi is a spiral ferromagnet with the Curie temperature Tc at 29K.
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Transition-metal monosilicides MnSi and FeSi show a variety of interesting magnetic and transport properties. They both crystallize in a cubic structure (space group P213) in which magnetic atoms are located at displaced face centered positions. MnSi is a spiral ferromagnet with the Curie temperature Tc at 29K.
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The improved magnetic properties of FeSi powders cores composed with different size particles
Journal of Materials Science: Materials in Electronics, 2021Shuoguo Li, K. Peng, L. Zou
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