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Temperature-Dependent Ultrastructure Transformation of Au-Fe Nanoparticles Investigated by in Situ Scanning Transmission Electron Microscopy

机译:通过原位扫描透射电子显微镜研究的Au-Fe纳米粒子的温度依赖性超微结构转化

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摘要

Three-dimensional morphology changes of bimetallic nanoparticles (NPs) with nominal composition Au50Fe50 and Au20Fe80, generated by pulsed laser ablation in liquid, are monitored in situ and ex situ via scanning transmission electron microscopy and electron tomography. The samples are made up of a chemically segregated core-shell (CS) NPs structure, with an Au-rich shell and Fe-rich core, and solid solution (SS) NPs in the pristine state. Further, the examinations reveal information about a sequence of characteristic changes from the pristine metastable and intermediate ultrastructures up to thermodynamically stable products. In the case of the Au20Fe80 sample, a metastable spherical CS morphology is transformed at equilibrium conditions into a cube-shaped Fe-rich core faceted by truncated Au-rich pyramids. For the Au50Fe50 sample, the Au-rich shell is solved into the Fe-rich core, and chemically homogeneous (SS) NPs are formed. Interestingly, this transformation was proven to occur via an intermediate ultrastructure with lamellar segregation, not previously reported as a transient state during in situ heating. On the basis of these observations, a correlation between the composition and the morphology at equilibrium is suggested, in accordance with the bulk phase diagram of Au-Fe. At the same time, our examinations directly prove that laser ablation synthesis creates nonequilibrium NP morphologies, frozen in metastable, spherical core-shell particles.
机译:通过脉冲激光烧蚀在液体中产生具有标称组合物Au50Fe50和Au20Fe80的二维纳米颗粒(NPS)的三维形态变化,通过扫描透射电子显微镜和电子断层扫描原位监测脉冲激光消融产生的Au50Fe50和Au20Fe80。样品由化学隔离的核 - 壳(CS)NPS结构组成,具有富含Au的壳和Fe的核心,以及原始状态下的固溶体(SS)NPS。此外,考试揭示了关于从丙氨酸稳定性和中间超微结构到热力学稳定的产品的一系列特征变化的信息。在AU20FE80样品的情况下,将亚稳态球形CS形态转化为通过致敏AU-金字塔的平衡条件转化成立方形Fe的核心。对于Au50Fe50样品,富含Au的壳体溶解在富含Fe的核心,形成化学均匀(SS)NPS。有趣的是,经过验证的这种转化,通过具有层状超微结构的中间超微结构发生,以前未在原位加热期间作为瞬态状态报告。在这些观察结果的基础上,根据Au-Fe的本体相图,提出了组合物与均衡时的形态之间的相关性。同时,我们的考试直接证明激光烧蚀合成产生非NP形态,冷冻在亚稳态球形核心 - 壳颗粒中。

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  • 来源
    《Crystal growth & design》 |2018年第9期|共7页
  • 作者单位

    Univ Kiel Fac Engn AG Synth &

    Real Struct Inst Mat Sci Kaiserstr 2 D-24143 Kiel Germany;

    Univ Duisburg Essen Tech Chem Univ Str 7 D-45141 Essen Germany;

    Univ Kiel Fac Engn AG Synth &

    Real Struct Inst Mat Sci Kaiserstr 2 D-24143 Kiel Germany;

    Univ Duisburg Essen Tech Chem Univ Str 7 D-45141 Essen Germany;

    Univ Duisburg Essen Tech Chem Univ Str 7 D-45141 Essen Germany;

    Univ Kiel Fac Engn AG Multicomponent Mat Inst Mat Sci Kaiserstr 2 D-24143 Kiel Germany;

    Univ Duisburg Essen Tech Chem Univ Str 7 D-45141 Essen Germany;

    Univ Kiel Fac Engn AG Synth &

    Real Struct Inst Mat Sci Kaiserstr 2 D-24143 Kiel Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学;
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