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Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)

Graphene oxide-cysteamine-silver nanoparticle (GCA)/silver nanowire (AgNW)/GCA/colorless poly(amide-imide) (cPAI) structures based on cPAI substrates with polyimide and polyamide syntheses were fabricated to study their characteristics. A layer of electrodes was constructed using a sandwich structur...

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Autores principales: Lee, Jaegun, Choi, Ju-Young, Jang, Junhwan, Park, Sechang, Ji, Gyumin, Lee, Seung-Hyun, Kim, Dam-Bi, Yoon, Kang-Hoon, Chung, Chan-Moon, Cho, Soohaeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103739/
https://www.ncbi.nlm.nih.gov/pubmed/35564166
http://dx.doi.org/10.3390/nano12091457
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author Lee, Jaegun
Choi, Ju-Young
Jang, Junhwan
Park, Sechang
Ji, Gyumin
Lee, Seung-Hyun
Kim, Dam-Bi
Yoon, Kang-Hoon
Chung, Chan-Moon
Cho, Soohaeng
author_facet Lee, Jaegun
Choi, Ju-Young
Jang, Junhwan
Park, Sechang
Ji, Gyumin
Lee, Seung-Hyun
Kim, Dam-Bi
Yoon, Kang-Hoon
Chung, Chan-Moon
Cho, Soohaeng
author_sort Lee, Jaegun
collection PubMed
description Graphene oxide-cysteamine-silver nanoparticle (GCA)/silver nanowire (AgNW)/GCA/colorless poly(amide-imide) (cPAI) structures based on cPAI substrates with polyimide and polyamide syntheses were fabricated to study their characteristics. A layer of electrodes was constructed using a sandwich structure—such as GCA/AgNW/GCA—with cPAI used as a substrate to increase the heat resistance and improve their mechanical properties. Furthermore, to overcome the disadvantages of AgNWs—such as their high surface roughness and weak adhesion between the substrate and electrode layers—electrodes with embedded structures were fabricated using a peel-off process. Through bending, tapping, and durability tests, it was confirmed that these multilayer electrodes exhibited better mechanical durability than conventional AgNW electrodes. Resistive random-access memory based on GCA/AgNW/GCA/cPAI electrodes was fabricated, and its applicability to nonvolatile memory was confirmed. The memory device had an ON/OFF current ratio of ~10(4)@0.5 V, exhibiting write-once-read-many time characteristics, maintaining these memory characteristics for up to 300 sweep cycles. These findings suggest that GCA/AgNW/GCA/cPAI electrodes could be used as flexible and transparent electrodes for next-generation flexible nonvolatile memories.
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spelling pubmed-91037392022-05-14 Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide) Lee, Jaegun Choi, Ju-Young Jang, Junhwan Park, Sechang Ji, Gyumin Lee, Seung-Hyun Kim, Dam-Bi Yoon, Kang-Hoon Chung, Chan-Moon Cho, Soohaeng Nanomaterials (Basel) Article Graphene oxide-cysteamine-silver nanoparticle (GCA)/silver nanowire (AgNW)/GCA/colorless poly(amide-imide) (cPAI) structures based on cPAI substrates with polyimide and polyamide syntheses were fabricated to study their characteristics. A layer of electrodes was constructed using a sandwich structure—such as GCA/AgNW/GCA—with cPAI used as a substrate to increase the heat resistance and improve their mechanical properties. Furthermore, to overcome the disadvantages of AgNWs—such as their high surface roughness and weak adhesion between the substrate and electrode layers—electrodes with embedded structures were fabricated using a peel-off process. Through bending, tapping, and durability tests, it was confirmed that these multilayer electrodes exhibited better mechanical durability than conventional AgNW electrodes. Resistive random-access memory based on GCA/AgNW/GCA/cPAI electrodes was fabricated, and its applicability to nonvolatile memory was confirmed. The memory device had an ON/OFF current ratio of ~10(4)@0.5 V, exhibiting write-once-read-many time characteristics, maintaining these memory characteristics for up to 300 sweep cycles. These findings suggest that GCA/AgNW/GCA/cPAI electrodes could be used as flexible and transparent electrodes for next-generation flexible nonvolatile memories. MDPI 2022-04-25 /pmc/articles/PMC9103739/ /pubmed/35564166 http://dx.doi.org/10.3390/nano12091457 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lee, Jaegun
Choi, Ju-Young
Jang, Junhwan
Park, Sechang
Ji, Gyumin
Lee, Seung-Hyun
Kim, Dam-Bi
Yoon, Kang-Hoon
Chung, Chan-Moon
Cho, Soohaeng
Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title_full Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title_fullStr Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title_full_unstemmed Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title_short Flexible and Transparent Electrode Based on Ag-Nanowire Embedded Colorless Poly(amide-imide)
title_sort flexible and transparent electrode based on ag-nanowire embedded colorless poly(amide-imide)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103739/
https://www.ncbi.nlm.nih.gov/pubmed/35564166
http://dx.doi.org/10.3390/nano12091457
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