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Observing Electrochemical Dealloying by Single-Nanoparticle Collision

机译:通过单纳米碰撞观察电化学脱合金

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We report direct observation of electrochemical and thermal dealloying processes of individual metal alloy nanoparticles (NPs). Electrochemical dealloying of single Ag-Hg alloy NPs was achieved in a basic solution (e.g., pH 13) by oxidizing Hg under controlled potentials. Ag can also be oxidized during single-particle collision. However, it requires elevated potentials. The strong basic environment promoted the formation of metal oxides during collision leading to a unique core shell type nanostructure which was further confirmed by transmission electron microscopy (TEM). In thermal dealloying, Hg was evaporated due to the use of a high-energy electron beam and the process was imaged in situ inside a TEM. Both electrochemical and thermal dealloying processes resulted in the transformation of an amorphous NP to a more stable Ag-Hg alloy nanocrystal. This work demonstrates that NP collision can be a useful tool to study dealloying processes of various nanomaterials at a single-particle level.
机译:我们报告直接观察到的单个金属合金纳米粒子(NPs)的电化学和热脱合金过程。通过在受控电势下氧化Hg,在碱性溶液(例如pH 13)中实现了单个Ag-Hg合金NP的电化学脱合金。在单粒子碰撞过程中,Ag也可能被氧化。但是,这需要更高的潜力。强大的碱性环境促进了碰撞过程中金属氧化物的形成,从而形成了独特的核壳型纳米结构,这进一步由透射电子显微镜(TEM)证实。在热脱合金中,由于使用了高能电子束而使汞蒸发,并且该过程在TEM内原位成像。电化学和热脱合金工艺均导致无定形NP转变为更稳定的Ag-Hg合金纳米晶体。这项工作表明,NP碰撞可能是研究单个粒子水平上各种纳米材料的脱合金过程的有用工具。

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