Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates

Abstract Ion irradiation can cause burrowing of nanoparticles in substrates, strongly depending on the material properties and irradiation parameters. In this study, it is demonstrated that the sinking process can be accomplished with ion irradiation of cube‐shaped Ag nanoparticles on top of silicon...

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Main Authors: Shiva Choupanian, Wolfhard Möller, Martin Seyring, Claudia Pacholski, Elke Wendler, Andreas Undisz, Carsten Ronning
Format: Article
Language:English
Published: Wiley-VCH 2024-01-01
Series:Advanced Materials Interfaces
Subjects:
Online Access:https://doi.org/10.1002/admi.202300570
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author Shiva Choupanian
Wolfhard Möller
Martin Seyring
Claudia Pacholski
Elke Wendler
Andreas Undisz
Carsten Ronning
author_facet Shiva Choupanian
Wolfhard Möller
Martin Seyring
Claudia Pacholski
Elke Wendler
Andreas Undisz
Carsten Ronning
author_sort Shiva Choupanian
collection DOAJ
description Abstract Ion irradiation can cause burrowing of nanoparticles in substrates, strongly depending on the material properties and irradiation parameters. In this study, it is demonstrated that the sinking process can be accomplished with ion irradiation of cube‐shaped Ag nanoparticles on top of silicon; how ion channeling affects the sinking rate; and underline the importance of the amorphous state of the substrate upon ion irradiation. Based on these experimental findings, the sinking process is described as being driven by capillary forces enabled by ion‐induced plastic flow of the substrate.
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spelling doaj.art-1190088dc6d3463087fd3d70a2c26f682024-01-05T04:51:01ZengWiley-VCHAdvanced Materials Interfaces2196-73502024-01-01111n/an/a10.1002/admi.202300570Ion Irradiation‐Induced Sinking of Ag Nanocubes into SubstratesShiva Choupanian0Wolfhard Möller1Martin Seyring2Claudia Pacholski3Elke Wendler4Andreas Undisz5Carsten Ronning6Institute of Solid State Physics Friedrich Schiller University Jena Max‐Wien‐Platz 1 07743 Jena GermanyHelmholtz‐Zentrum Dresden‐Rossendorf Bautzner Landstraße 400 01328 Dresden GermanyOtto Schott Institute of Materials Research Friedrich Schiller University Jena Löbdergraben 32 07743 Jena GermanyInstitute of Chemistry University of Potsdam Karl‐Liebknecht‐Str. 24–25 14476 Potsdam GermanyInstitute of Solid State Physics Friedrich Schiller University Jena Max‐Wien‐Platz 1 07743 Jena GermanyOtto Schott Institute of Materials Research Friedrich Schiller University Jena Löbdergraben 32 07743 Jena GermanyInstitute of Solid State Physics Friedrich Schiller University Jena Max‐Wien‐Platz 1 07743 Jena GermanyAbstract Ion irradiation can cause burrowing of nanoparticles in substrates, strongly depending on the material properties and irradiation parameters. In this study, it is demonstrated that the sinking process can be accomplished with ion irradiation of cube‐shaped Ag nanoparticles on top of silicon; how ion channeling affects the sinking rate; and underline the importance of the amorphous state of the substrate upon ion irradiation. Based on these experimental findings, the sinking process is described as being driven by capillary forces enabled by ion‐induced plastic flow of the substrate.https://doi.org/10.1002/admi.202300570ion channelingion nanostructure interactionion‐induced viscous flowlow energy ionsmetallic nanoparticlesplastic flow
spellingShingle Shiva Choupanian
Wolfhard Möller
Martin Seyring
Claudia Pacholski
Elke Wendler
Andreas Undisz
Carsten Ronning
Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
Advanced Materials Interfaces
ion channeling
ion nanostructure interaction
ion‐induced viscous flow
low energy ions
metallic nanoparticles
plastic flow
title Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
title_full Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
title_fullStr Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
title_full_unstemmed Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
title_short Ion Irradiation‐Induced Sinking of Ag Nanocubes into Substrates
title_sort ion irradiation induced sinking of ag nanocubes into substrates
topic ion channeling
ion nanostructure interaction
ion‐induced viscous flow
low energy ions
metallic nanoparticles
plastic flow
url https://doi.org/10.1002/admi.202300570
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AT wolfhardmoller ionirradiationinducedsinkingofagnanocubesintosubstrates
AT martinseyring ionirradiationinducedsinkingofagnanocubesintosubstrates
AT claudiapacholski ionirradiationinducedsinkingofagnanocubesintosubstrates
AT elkewendler ionirradiationinducedsinkingofagnanocubesintosubstrates
AT andreasundisz ionirradiationinducedsinkingofagnanocubesintosubstrates
AT carstenronning ionirradiationinducedsinkingofagnanocubesintosubstrates