Analysis of water ice in nanoporous copper needles using cryo atom probe tomography

Fuente: arXiv
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Auteurs principaux: Tegg, Levi, McCarroll, Ingrid E., Kim, Se-Ho, Dubosq, Renelle, Woods, Eric V., El-Zoka, Ayman A., Gault, Baptiste, Cairney, Julie M.
Format: Preprint
Publié: 2024
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author Tegg, Levi
McCarroll, Ingrid E.
Kim, Se-Ho
Dubosq, Renelle
Woods, Eric V.
El-Zoka, Ayman A.
Gault, Baptiste
Cairney, Julie M.
author_facet Tegg, Levi
McCarroll, Ingrid E.
Kim, Se-Ho
Dubosq, Renelle
Woods, Eric V.
El-Zoka, Ayman A.
Gault, Baptiste
Cairney, Julie M.
contents The application of atom probe tomography (APT) to frozen liquids is limited by difficulties in specimen preparation. Here, we report on the use of nanoporous Cu needles as a physical framework to hold water ice for investigation using APT. Nanoporous Cu needles are prepared by the electropolishing and dealloying of Cu-Mn matchstick precursors. Cryogenic scanning electron microscopy and focused-ion beam milling reveal a hierarchical, dendritic, highly-wettable microstructure. The atom probe mass spectrum is dominated by peaks of Cu+ and H(H2O)n+ up to n <= 3, and the reconstructed volume shows the protrusion of a Cu ligament into an ice-filled pore. The continuous Cu ligament network electrically connects the apex to the cryostage, leading to enhanced electric field at the apex and increased cooling, both of which simplify the mass spectrum compared to previous reports.
format Preprint
id arxiv_https___arxiv_org_abs_2402_04608
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Analysis of water ice in nanoporous copper needles using cryo atom probe tomography
Tegg, Levi
McCarroll, Ingrid E.
Kim, Se-Ho
Dubosq, Renelle
Woods, Eric V.
El-Zoka, Ayman A.
Gault, Baptiste
Cairney, Julie M.
Materials Science
Soft Condensed Matter
The application of atom probe tomography (APT) to frozen liquids is limited by difficulties in specimen preparation. Here, we report on the use of nanoporous Cu needles as a physical framework to hold water ice for investigation using APT. Nanoporous Cu needles are prepared by the electropolishing and dealloying of Cu-Mn matchstick precursors. Cryogenic scanning electron microscopy and focused-ion beam milling reveal a hierarchical, dendritic, highly-wettable microstructure. The atom probe mass spectrum is dominated by peaks of Cu+ and H(H2O)n+ up to n <= 3, and the reconstructed volume shows the protrusion of a Cu ligament into an ice-filled pore. The continuous Cu ligament network electrically connects the apex to the cryostage, leading to enhanced electric field at the apex and increased cooling, both of which simplify the mass spectrum compared to previous reports.
title Analysis of water ice in nanoporous copper needles using cryo atom probe tomography
topic Materials Science
Soft Condensed Matter
url https://arxiv.org/abs/2402.04608