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首页> 外文期刊>American Mineralogist >Manganese valence imaging in Mn minerals at the nanoscale using STEM-EELS
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Manganese valence imaging in Mn minerals at the nanoscale using STEM-EELS

机译:使用STEM-EELS在纳米级的锰矿物中锰价成像

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摘要

Electron energy loss spectroscopy (EELS) was used with scanning transmission electron microscopy (STEM) to quantify the average Mn valence in natural minerals at the nanometer scale. A method was developed to calibrate the energy-loss scale accurately, providing a comparison between STEM-EELS and the X-ray absorption spectroscopy methods that investigate the L-edge chemical shift as Mn valence changes. The chemical-shift measurements were consistent with data reported by previous researchers from both X-ray and electron energy-loss spectroscopy. The L3/L2 white-line intensity ratios also were consistent with previous work. A calibration curve for Mn valence was produced using the L3/L2 white-line intensity ratios from measurements of synthetic standards. The average Mn valence was determined because it is not possible to distinguish Mn3+ from mixtures of Mn2+ and Mn4+ using either method. The white-line intensity method was implemented in automated software that allows for rapid processing of point spectra, and 1-D and 2-D spectrum images. Point analyses of two natural pyrolusite samples indicated a Mn valence of 4.0, and point analyses of romanechite and manganite gave values of 3.8 and 3.4, respectively. An interface between braunite and bementite was used to illustrate 1-D and 2-D spectrum-imaging capabilities. The measured valence of Mn in the braunite and bementite was 2.9 and 2.0, respectively; both consistent with theoretical values. The braunite-bementite sample demonstrated the heterogeneity of Mn valence common to natural minerals and the advantages of acquiring quantitative valence information in a known spatial context.
机译:将电子能量损失谱(EELS)与扫描 透射电子显微镜(STEM)结合使用,以量化纳米级天然矿物中的平均 Mn价。开发了一种方法 来准确地校准能量损失规模, 提供了STEM-EELS与X射线吸收 光谱法之间的比较,研究Mn价变化时L边缘化学位移 。化学位移测量结果与以前的研究人员从 X射线和电子能量损失光谱学报告的数据一致。 L 3 / L 2 白线 的强度比也与以前的工作一致。利用测量的L 3 / L 2 白线强度比绘制Mn价的 校准曲线 确定了平均Mn价,因为不可能 从Mn 2+的混合物中区分Mn 3 + 和Mn 4 + 使用 方法之一。白线强度方法是在自动化的 软件中实现的,该软件可以快速处理点光谱, 以及一维和二维光谱图像。对两个天然 锰矿样品的点分析表明Mn价为4.0,对锰矿和锰矿的点 分析得出的值分别为3.8和 3.4。 。褐铁矿和钙钛矿之间的界面被用来说明一维和二维光谱成像的能力。 在褐铁矿和贝母石中测得的锰的化合价为 2.9和2.0;两者都与理论 值一致。褐铁-贝母石样品显示了天然矿物常见的锰价态的异质性,以及在已知空间 语境中获取定量价态信息的优点

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  • 来源
    《American Mineralogist》 |2007年第1期|72-79|共8页
  • 作者单位

    Department of Geology, University of New Brunswick, P.O. Box 4400, Fredericton, New Brunswick E3B 5A3, Canada;

    Department of Geology, University of New Brunswick, P.O. Box 4400, Fredericton, New Brunswick E3B 5A3, Canada;

    Microscopy and Microanalysis Facility, University of New Brunswick, P.O. Box 4400, Fredericton, New Brunswick E3B 5A3, Canada;

    Microscopy and Microanalysis Facility, University of New Brunswick, P.O. Box 4400, Fredericton, New Brunswick E3B 5A3, Canada;

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