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  5. Unveiling Corrosion Pathways of Sn Nanocrystals through High-Resolution Liquid Cell Electron Microscopy

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Article
en
2024

Unveiling Corrosion Pathways of Sn Nanocrystals through High-Resolution Liquid Cell Electron Microscopy

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en
2024
Vol 24 (4)
Vol. 24
DOI: 10.1021/acs.nanolett.3c03913

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Paul Alivisatos
Paul Alivisatos

University of Chicago

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Xinxing Peng
Junyi Shangguan
Qiubo Zhang
+6 more

Abstract

Unveiling materials' corrosion pathways is significant for understanding the corrosion mechanisms and designing corrosion-resistant materials. Here, we investigate the corrosion behavior of Sn@Ni3Sn4 and Sn nanocrystals in an aqueous solution in real time by using high-resolution liquid cell transmission electron microscopy. Our direct observation reveals an unprecedented level of detail on the corrosion of Sn metal with/without a coating of Ni3Sn4 at the nanometric and atomic levels. The Sn@Ni3Sn4 nanocrystals exhibit "pitting corrosion", which is initiated at the defect sites in the Ni3Sn4 protective layer. The early stage isotropic etching transforms into facet-dependent etching, resulting in a cavity terminated with low-index facets. The Sn nanocrystals under fast etching kinetics show uniform corrosion, and smooth surfaces are obtained. Sn nanocrystals show "creeping-like" etching behavior and rough surfaces. This study provides critical insights into the impacts of coating, defects, and ion diffusion on corrosion kinetics and the resulting morphologies.

How to cite this publication

Xinxing Peng, Junyi Shangguan, Qiubo Zhang, Haobo Yu, Yifan Nie, Karen C. Bustillo, Paul Alivisatos, Mark Asta, Haimei Zheng (2024). Unveiling Corrosion Pathways of Sn Nanocrystals through High-Resolution Liquid Cell Electron Microscopy. , 24(4), DOI: https://doi.org/10.1021/acs.nanolett.3c03913.

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Publication Details

Type

Article

Year

2024

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acs.nanolett.3c03913

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