Direct Visualization of Temperature-Induced Phase Separation of Completely Miscible Au-Pd Alloy by In-Situ TEM

Fuente: arXiv
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Autori principali: Roy, Abhijit, Hettler, Simon, Arenal, Raul
Natura: Preprint
Pubblicazione: 2025
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author Roy, Abhijit
Hettler, Simon
Arenal, Raul
author_facet Roy, Abhijit
Hettler, Simon
Arenal, Raul
contents In-situ transmission electron microscopy (TEM) studies reveal key insights into the structural and chemical evolution of nanoparticles (NPs) under external stimuli like heating and biasing, which is critical for evaluating their suitability in chemical reactions and their tendency towards forming novel NP systems. In this study, starting from a core@shell Au nanotriangle (AuNT)@Pd nanostructure, the formation of a phase-separated bi-metallic Au-Pd NP system at high temperature is reported, despite the fact that Au and Pd are miscible in the entire composition and temperature range. In-situ TEM heating of bare AuNT@Pd core@shell structures up to 1000°C has been performed. Between 400°C and 800°C, an initial alloy formation has been observed. It is also noted that higher initial loading of Pd increases the melting temperature of the bi-metallic system. However, the most important observation is the separation of the nanostructure into Au and Pd phases at temperatures higher than 850° C for high Pd doping. The extent of Pd separation depends on the amount of initial Pd loading. A Janus Au-Pd nanostructure is formed at the end of the thermal treatments at 1000° C. The phase-separated NP is observed to be highly stable and could be clearly beneficial for various applications, particularly in catalytic processes.
format Preprint
id arxiv_https___arxiv_org_abs_2502_04547
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Direct Visualization of Temperature-Induced Phase Separation of Completely Miscible Au-Pd Alloy by In-Situ TEM
Roy, Abhijit
Hettler, Simon
Arenal, Raul
Materials Science
In-situ transmission electron microscopy (TEM) studies reveal key insights into the structural and chemical evolution of nanoparticles (NPs) under external stimuli like heating and biasing, which is critical for evaluating their suitability in chemical reactions and their tendency towards forming novel NP systems. In this study, starting from a core@shell Au nanotriangle (AuNT)@Pd nanostructure, the formation of a phase-separated bi-metallic Au-Pd NP system at high temperature is reported, despite the fact that Au and Pd are miscible in the entire composition and temperature range. In-situ TEM heating of bare AuNT@Pd core@shell structures up to 1000°C has been performed. Between 400°C and 800°C, an initial alloy formation has been observed. It is also noted that higher initial loading of Pd increases the melting temperature of the bi-metallic system. However, the most important observation is the separation of the nanostructure into Au and Pd phases at temperatures higher than 850° C for high Pd doping. The extent of Pd separation depends on the amount of initial Pd loading. A Janus Au-Pd nanostructure is formed at the end of the thermal treatments at 1000° C. The phase-separated NP is observed to be highly stable and could be clearly beneficial for various applications, particularly in catalytic processes.
title Direct Visualization of Temperature-Induced Phase Separation of Completely Miscible Au-Pd Alloy by In-Situ TEM
topic Materials Science
url https://arxiv.org/abs/2502.04547