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Formation and magnetic properties of InFeP:Ag nanorods fabricated with noble metal Ag using an ion milling method

机译:IFEMEP的形成和磁性:使用离子铣削法制备贵金属AG制造的Ag纳米棒

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The formation, including the density and height of the InFeP:Ag nanorods doped with noble metal Ag using an ion milling method, was preponderantly determined from transmission electron microscopy and x-ray diffraction analyses. We investigate, in particular, the enhanced ferromagnetism of the well-aligned InFeP:Ag nanorods. Auger electron spectroscopy and x-ray photoelectron spectroscopy measurements were carried out in order to investigate the incorporation of Ag and to verify the local chemical bonding of the InFeP:Ag nanorods. The variation of FWHM for the double-crystal x-ray rocking curve and triple-axis diffraction peaks demonstrates that noble metal Ag is incorporated into the InFeP:Ag nanorods. The noticeable ferromagnetic signature (M-H curve) of the InFeP:Ag nanorods is observed and T-c persists up to almost 350 K (3.9 x 10(-1) emu g(-1)), as determined by temperature-dependence magnetization (M-T curve) measurements. This study suggests that the InFeP:Ag nanorods should be a potential candidate for the application of spintronic devices.
机译:包括使用离子铣削方法掺杂有贵金属AG的IFEP的密度和高度的形成,从透射电子显微镜和X射线衍射分析中掺杂掺杂有贵金属AG的Ag纳米棒。特别是,特别调查了对准良好的Infep:Ag Nanorods的增强的铁磁性。进行螺旋钻电子光谱和X射线光电子能谱测量,以研究AG的掺入并验证INFEP的当地化学键合:AG纳米棒。双晶X射线摇摆曲线和三轴衍射峰的FWHM的变化表明贵金属Ag掺入Infep:Ag Nanorods中。 infep的明显的铁磁性签名(MH曲线):通过温度依赖磁化测定(MT曲线)测定(MT曲线) 测量。本研究表明,IFEP:AG纳米码应该是应用闪光装置的潜在候选者。

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