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Structure, microstructure and magnetic investigation of the hexagonal δ-FeSe nanophase produced by mechanochemical synthesis

机译:由机械化素合成产生的六角形δ-FESE纳米相的结构,微观结构和磁力研究

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摘要

We present a systematic structural, microstructural and magnetic characterization of the hexagonal δ-FeSe nanophase produced by a simple one-step mechanochemical synthesis route, by using conventional X-ray powder diffraction (XRPD), Rietveld refinement, transmission electron microscopy (TEM) and magnetometry techniques. We observed the simultaneous formation of tetragonal β-FeSe and δ-FeSe after 3 h of milling (with minor amounts of unreacted iron), followed by complete β-FeSe → δ-FeSe phase transition as milling time increases to 6 h (no unreacted iron). The average crystallite size of the δ-FeSe phase of about 16 nm after 3 h milling time decreases by about 31% up to the final milling time (24 h). TEM images and electron diffraction patterns confirm the nanometric size of the crystalline domains in the irregularly-shaped agglomerated particles. Two ferromagnetic phases with distinct coercivity spectra were assumed here by considering an assembly of randomly-oriented weakly-anisotropic ferromagnetic particles, mixed at a 4 to 6 volume ratio with other randomly-oriented ferromagnetic grains. Four years after synthesis, the aged samples milled for less than 9 h revealed a certain amount of the β-FeSe phase that slightly affects the δ-FeSe (micro)structure but causes some variations (decreasing) in magnetic parameters. Milling times as long as 12 h were shown to be necessary to guarantee the δ-FeSe nanophase stability and to retain its magnetic properties over time.
机译:通过使用常规的X射线粉末衍射(XRPD),RIETVELD细化,透射电子显微镜(TEM)和透射电子显微镜(TEM)和磁力学技术。我们观察到在铣削3小时后同时形成四方β-FESE和δ-FESE(具有少量未反应的铁),其次是完全β-FESE→Δ-FESE相转变,因为研磨时间增加到6小时(没有未反应铁)。在3小时磨时间后约16nm的δ-fese相的平均微晶尺寸降低约31%,直至最终研磨时间(24小时)。 TEM图像和电子衍射图案在不规则形状的附聚颗粒中确认晶体域的纳米尺寸。这里通过考虑随机导向的弱各向异性铁磁性颗粒的组装,在4至6体积比与其他随机取向的铁磁性颗粒混合的情况下,使用不同胁迫光谱的两个铁磁性相。合成四年后,铣削的老化样品小于9小时,揭示了一定量的β-纤维相,略微影响Δ-fese(微)结构,但在磁性参数中引起一些变化(减小)。铣削时间只显示为12小时,以保证Δ-fese纳米相稳定性并随时间保留其磁性。

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