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尺寸、形状和孪晶界对单个 Au@Ag 核壳纳米粒子中热诱导合金化的影响。

The Influence of Size, Shape, and Twin Boundaries on Heat-Induced Alloying in Individual Au@Ag Core-Shell Nanoparticles.

机构信息

EMAT, University of Antwerp, Groenenborgerlaan 171, Antwerp, 2020, Belgium.

NANOlab Center of Excellence, University of Antwerp, Groenenborgerlaan 171, Antwerp, 2020, Belgium.

出版信息

Small. 2021 Aug;17(34):e2102348. doi: 10.1002/smll.202102348. Epub 2021 Jul 14.

Abstract

Environmental conditions during real-world application of bimetallic core-shell nanoparticles (NPs) often include the use of elevated temperatures, which are known to cause elemental redistribution, in turn significantly altering the properties of these nanomaterials. Therefore, a thorough understanding of such processes is of great importance. The recently developed combination of fast electron tomography with in situ heating holders is a powerful approach to investigate heat-induced processes at the single NP level, with high spatial resolution in 3D. In combination with 3D finite-difference diffusion simulations, this method can be used to disclose the influence of various NP parameters on the diffusion dynamics in Au@Ag core-shell systems. A detailed study of the influence of heating on atomic diffusion and alloying for Au@Ag NPs with varying core morphology and crystallographic details is carried out. Whereas the core shape and aspect ratio of the NPs play a minor role, twin boundaries are found to have a strong influence on the elemental diffusion.

摘要

在双金属核壳纳米粒子 (NPs) 的实际应用中,环境条件通常包括使用高温,已知高温会导致元素再分配,从而显著改变这些纳米材料的性质。因此,深入了解这些过程非常重要。最近开发的快速电子断层扫描与原位加热支架相结合的方法是一种在单 NP 水平上研究热诱导过程的强大方法,具有高空间分辨率的 3D。结合 3D 有限差分扩散模拟,该方法可用于揭示各种 NP 参数对 Au@Ag 核壳系统中扩散动力学的影响。详细研究了加热对具有不同核形态和晶体学细节的 Au@Ag NPs 中原子扩散和合金化的影响。尽管 NPs 的核心形状和纵横比的影响较小,但发现孪晶界对元素扩散有很强的影响。

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