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Nanometres-resolution Kikuchi patterns from materials science specimens with transmission electron forward scatter diffraction in the scanning electron microscope

机译:扫描电子显微镜中具有透射电子正向散射衍射的材料科学标本的纳米级菊池图案

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A charge-coupled device camera of an electron backscattered diffraction system in a scanning electron microscope was positioned below a thin specimen and transmission Kikuchi patterns were collected. Contrary to electron backscattered diffraction, transmission electron forward scatter diffraction provides phase identification and orientation mapping at the nanoscale. The minimum Pd particle size for which a Kikuchi diffraction pattern was detected and indexed reliably was 5.6 nm. An orientation mapping resolution of 5 nm was measured at 30 kV. The resolution obtained with transmission electron forward scatter diffraction was of the same order of magnitude than that reported in electron nanodiffraction in the transmission electron microscope. An energy dispersive spectrometer X-ray map and a transmission electron forward scatter diffraction orientation map were acquired simultaneously. The high-resolution chemical, phase and orientation maps provided at once information on the chemical form, orientation and coherency of precipitates in an aluminium-lithium 2099 alloy. ? 2013 The Authors. Journal of Microscopy ? 2013 Royal Microscopical Society.
机译:扫描电子显微镜中的电子背散射衍射系统的电荷耦合器件照相机位于薄样品下方,并且收集透射菊池图案。与电子反向散射衍射相反,透射电子正向散射衍射可提供纳米级的相位识别和取向映射。检测到菊池衍射图案并可靠地对其进行索引的最小Pd粒径为5.6nm。在30 kV下测得的取向映射分辨率为5 nm。通过透射电子前向散射衍射获得的分辨率与透射电子显微镜中电子纳米衍射中报道的分辨率具有相同的数量级。同时获得了能量色散谱仪的X射线图和透射电子前向散射衍射取向图。高分辨率化学,相和取向图可立即提供有关铝锂2099合金中析出物的化学形式,取向和相干性的信息。 ? 2013作者。显微镜杂志? 2013皇家显微学会。

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