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Mössbauer transmission and back-scattered conversion electron study of Fe nanowires encapsulated in multi-walled carbon nanotubes

机译:多壁碳纳米管中Fe纳米线的Mössbauer透射和背散射转换电子研究

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摘要

Fe-57 transmission Mossbauer spectroscopy (TMS) and back scattered conversion electron Mossbauer spectroscopy (CEMS) measurements were carried out on Fe-filled multiwalled carbon nanotubes (Fe-MWCNTs) grown by chemical vapor deposition with ferrocene as precursor. Samples of Fe-MWCNTs material deposited on the inner wall of the quartz tube reactor and samples of aligned Fe-MWCNTs grown perpendicularly to the oxidized Si substrate were characterised by the TMS method. The data show that Fe phases encapsulated within the carbon nanotubes comprise alpha-Fe, gamma-Fe, and Fe3C in different percentage ratio depending on the sample preparation. These results are in a good accordance with the previously measured magnetic characteristics and with the structural data found by x-ray diffraction as well by selected area electron diffraction methods and allow a new complementary characterization of the Fe(Fe-alloy)-MWCNT systems. The CEMS method applied for the characterization of metal containing MWCNTs reveals that close to the top surface of the aligned Fe-MWCNTs samples only the gamma-Fe phase is found. This technique shows an additional potential for further investigation of the spatial distribution of the crystalline phases in the depth of aligned Fe-MWCNT samples. (C) 2004 American Institute of Physics.
机译:Fe-57透射Mossbauer光谱(TMS)和背散射转换电子Mossbauer光谱(CEMS)的测量是在以二茂铁为前驱物通过化学气相沉积法生长的Fe填充多壁碳纳米管(Fe-MWCNT)上进行的。用TMS方法表征沉积在石英管反应器内壁上的Fe-MWCNTs材料样品和垂直于氧化的Si衬底生长的取向Fe-MWCNTs样品。数据表明,根据样品制备,封装在碳纳米管中的Fe相包含不同百分比比例的α-Fe,γ-Fe和Fe3C。这些结果与先前测得的磁特性以及通过X射线衍射以及通过选定区域电子衍射方法发现的结构数据非常吻合,并且可以对Fe(Fe-合金)-MWCNT系统进行新的互补表征。用于表征含金属的碳纳米管的CEMS方法表明,在对准的Fe-MWCNT的顶表面附近仅发现了γ-Fe相。这项技术显示了进一步研究对齐的Fe-MWCNT样品深度中晶相的空间分布的额外潜力。 (C)2004美国物理研究所。

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