Solid-state synthesis and magnetic properties of rhombohedral phase Mg2SiNi3
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Liangbiao Wang
, Dejian Zhao , Juanjuan Lu , Weiqiao Liu and Quanfa Zhou
Abstract
A solid-state route was developed to prepare rhombohedral phase Mg2SiNi3 with the dimensions of about 300 nm by using metallic magnesium, nickel oxide and silicon as starting materials at 700 °C in an autoclave reactor. The obtained product was investigated by means of X-ray diffraction, scanning electron microscopy and transmission electron microscopy. Magnetic measurement at room temperature indicated that the values of saturation magenetization and coercivity of the obtained Mg2SiNi3 were 0.31 emu g–1 and 65.20 Oe, respectively.
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Articles in the same Issue
- Contents
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- Original Contributions
- Phase-field simulation of the solidified microstructure in a new commercial 6××× aluminum alloy ingot supported by experimental measurements
- Hydrogen sorption and corrosion properties of La2Ni9CoSn0.2 alloy
- Isothermal sections of the Co–Ni–Ti system at 950 and 1 000 °C
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- Photocatalytic properties of nano-structured carbon nitride: a comparison with bulk graphitic carbon nitride
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- Three-body abrasive wear behaviour of metastable spheroidal carbide cast irons with different chromium contents
- Intermetallic precipitation in rare earth-treated A413.1 alloy: A metallographic study
- Short Communications
- Microstructure and magnetic properties of iron–cobalt-based alloys processed by metal injection moulding
- Solid-state synthesis and magnetic properties of rhombohedral phase Mg2SiNi3
- DGM News
- DGM News