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Real-time imaging and elemental mapping of AgAu nanoparticle transformations

机译:实时成像和AgAu元素的映射纳米颗粒的转换

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摘要

We report the controlled alloying, oxidation, and subsequent reduction of individual AgAu nanoparticles in the scanning transmission electron microscope (STEM). Through sequential application of electron beam induced oxidation and in situ heating and quenching, we demonstrate the transformation of Ag-Au core-shell nanoparticles into: AgAu alloyed, Au-Ag core-shell, hollow Au-Ag2O core-shell, and Au-Ag2O yolk-shell nanoparticles. We are able to directly image these morphological transformations in real-time at atomic resolution and perform energy dispersive X-ray (EDX) spectrum imaging to map changing elemental distributions with sub-nanometre resolution. By combining aberration corrected STEM imaging and high efficiency EDX spectroscopy we are able to quantify not only the growth and coalescence of Kirkendall voids during oxidation but also the compositional changes occurring during this reaction. This is the first time that it has been possible to track the changing distribution of elements in an individual nanoparticle undergoing oxidation driven shell growth and hollowing.
机译:我们报告控制合金、氧化和随后的减少个人AgAu纳米颗粒的扫描透射电子显微镜(杆)。应用电子束诱导氧化和原位加热和淬火,我们证明Ag-Au的变换核壳纳米颗粒进入:AgAu合金,Au-Ag核壳、中空Au-Ag2O核壳Au-Ag2O yolk-shell纳米颗粒。直接形象这些形态在原子分辨率实时转换并执行能量色散x射线(EDX)光谱成像映射元素的变化分布与sub-nanometre决议。结合畸变抑制成像和纠正我们有能力高效EDX能谱量化的增长和聚结柯肯特尔在氧化也是空洞成分的变化发生在这的反应。可以跟踪的变化分布元素在一个单独的纳米颗粒发生氧化壳驱动增长和挖空。

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