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Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics

We report a spray deposition technique for patterning liquid metal alloys to form stretchable conductors, which can then be encapsulated in silicone elastomers via the same spraying procedure. While spraying has been used previously to deposit many materials, including liquid metals, this work focus...

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Autores principales: Neumann, Taylor V., Kara, Berra, Sargolzaeiaval, Yasaman, Im, Sooik, Ma, Jinwoo, Yang, Jiayi, Ozturk, Mehmet C., Dickey, Michael D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7912875/
https://www.ncbi.nlm.nih.gov/pubmed/33535606
http://dx.doi.org/10.3390/mi12020146
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author Neumann, Taylor V.
Kara, Berra
Sargolzaeiaval, Yasaman
Im, Sooik
Ma, Jinwoo
Yang, Jiayi
Ozturk, Mehmet C.
Dickey, Michael D.
author_facet Neumann, Taylor V.
Kara, Berra
Sargolzaeiaval, Yasaman
Im, Sooik
Ma, Jinwoo
Yang, Jiayi
Ozturk, Mehmet C.
Dickey, Michael D.
author_sort Neumann, Taylor V.
collection PubMed
description We report a spray deposition technique for patterning liquid metal alloys to form stretchable conductors, which can then be encapsulated in silicone elastomers via the same spraying procedure. While spraying has been used previously to deposit many materials, including liquid metals, this work focuses on quantifying the spraying process and combining it with silicones. Spraying generates liquid metal microparticles (~5 μm diameter) that pass through openings in a stencil to produce traces with high resolution (~300 µm resolution using stencils from a craft cutter) on a substrate. The spraying produces sufficient kinetic energy (~14 m/s) to distort the particles on impact, which allows them to merge together. This merging process depends on both particle size and velocity. Particles of similar size do not merge when cast as a film. Likewise, smaller particles (<1 µm) moving at the same speed do not rupture on impact either, though calculations suggest that such particles could rupture at higher velocities. The liquid metal features can be encased by spraying uncured silicone elastomer from a volatile solvent to form a conformal coating that does not disrupt the liquid metal features during spraying. Alternating layers of liquid metal and elastomer may be patterned sequentially to build multilayer devices, such as soft and stretchable sensors.
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spelling pubmed-79128752021-02-28 Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics Neumann, Taylor V. Kara, Berra Sargolzaeiaval, Yasaman Im, Sooik Ma, Jinwoo Yang, Jiayi Ozturk, Mehmet C. Dickey, Michael D. Micromachines (Basel) Article We report a spray deposition technique for patterning liquid metal alloys to form stretchable conductors, which can then be encapsulated in silicone elastomers via the same spraying procedure. While spraying has been used previously to deposit many materials, including liquid metals, this work focuses on quantifying the spraying process and combining it with silicones. Spraying generates liquid metal microparticles (~5 μm diameter) that pass through openings in a stencil to produce traces with high resolution (~300 µm resolution using stencils from a craft cutter) on a substrate. The spraying produces sufficient kinetic energy (~14 m/s) to distort the particles on impact, which allows them to merge together. This merging process depends on both particle size and velocity. Particles of similar size do not merge when cast as a film. Likewise, smaller particles (<1 µm) moving at the same speed do not rupture on impact either, though calculations suggest that such particles could rupture at higher velocities. The liquid metal features can be encased by spraying uncured silicone elastomer from a volatile solvent to form a conformal coating that does not disrupt the liquid metal features during spraying. Alternating layers of liquid metal and elastomer may be patterned sequentially to build multilayer devices, such as soft and stretchable sensors. MDPI 2021-02-01 /pmc/articles/PMC7912875/ /pubmed/33535606 http://dx.doi.org/10.3390/mi12020146 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Neumann, Taylor V.
Kara, Berra
Sargolzaeiaval, Yasaman
Im, Sooik
Ma, Jinwoo
Yang, Jiayi
Ozturk, Mehmet C.
Dickey, Michael D.
Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title_full Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title_fullStr Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title_full_unstemmed Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title_short Aerosol Spray Deposition of Liquid Metal and Elastomer Coatings for Rapid Processing of Stretchable Electronics
title_sort aerosol spray deposition of liquid metal and elastomer coatings for rapid processing of stretchable electronics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7912875/
https://www.ncbi.nlm.nih.gov/pubmed/33535606
http://dx.doi.org/10.3390/mi12020146
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