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Unique surface patterns emerging during solidification of liquid metal alloys

  • Jianbo Tang*
  • , Stephanie Lambie
  • , Nastaran Meftahi
  • , Andrew J. Christofferson
  • , Jiong Yang
  • , Mohammad B. Ghasemian
  • , Jialuo Han
  • , Francois Marie Allioux
  • , Md Arifur Rahim
  • , Mohannad Mayyas
  • , Torben Daeneke
  • , Chris F. McConville
  • , Krista G. Steenbergen
  • , Richard B. Kaner
  • , Salvy P. Russo
  • , Nicola Gaston*
  • , Kourosh Kalantar-Zadeh*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

144 Scopus citations

Abstract

It is well-understood that during the liquid-to-solid phase transition of alloys, elements segregate in the bulk phase with the formation of microstructures. In contrast, we show here that in a Bi–Ga alloy system, highly ordered nanopatterns emerge preferentially at the alloy surfaces during solidification. We observed a variety of transition, hybrid and crystal-defect-like patterns, in addition to lamellar and rod-like structures. Combining experiments and molecular dynamics simulations, we investigated the influence of the superficial Bi and Ga2O3 layers during surface solidification and elucidated the pattern-formation mechanisms, which involve surface-catalysed heterogeneous nucleation. We further demonstrated the dynamic nature and robustness of the phenomenon under different solidification conditions and for various alloy systems. The surface patterns we observed enable high-spatial-resolution nanoscale-infrared and surface-enhanced Raman mapping, which reveal promising potential for surface- and nanoscale-based applications.

Original languageEnglish
Pages (from-to)431-439
Number of pages9
JournalNature Nanotechnology
Volume16
Issue number4
DOIs
StatePublished - Apr 2021
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer Nature Limited.

ASJC Scopus subject areas

  • Bioengineering
  • Atomic and Molecular Physics, and Optics
  • Biomedical Engineering
  • General Materials Science
  • Condensed Matter Physics
  • Electrical and Electronic Engineering

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