Synthesis and magnetic properties of Sm2Co17 particles using salt-assisted spray pyrolysis and a reduction-diffusion process

2019 
Abstract Sm 2 Co 17 particles, with several hundreds of nanometers to a few micrometers in diameter, were synthesized by a combination of salt-assisted ultrasonic spray pyrolysis and a reduction-diffusion (R-D) process. It was found that NaCl plays a decisive role toward the suppression of particle coalescence during R-D process. By optimizing a reductant contents, the single-phased and non-agglomerated Sm 2 Co 17 particles were obtained. In addition, particle size was controlled by varying calcination temperature from 800 °C to 1100 °C and size-dependent magnetic properties were observed. The optimum magnetic properties were achieved at a calcination temperature of 900 °C: coercivity of 5.3 kOe, a saturation magnetization of 99.33 emu/g, and a remanence of 56.53 emu/g.
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