Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet

Abstract In this study, we report an experimental investigation of the structural, morphological, and electrical properties of the ZrO2-Ag-Graphene sheet. In particular, we use the tape casting technique to produce the flexible ZrO2 ceramic sheet and impregnation and magnetron sputtering techniques...

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Main Authors: Hugo. P. A. Alves, Paulo. H. Chiberio, Marcio. A. Correa, Wilson Acchar
Format: Article
Language:English
Published: Associação Brasileira de Cerâmica 2025-04-01
Series:Cerâmica
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Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132025000100308&lng=en&tlng=en
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author Hugo. P. A. Alves
Paulo. H. Chiberio
Marcio. A. Correa
Wilson Acchar
author_facet Hugo. P. A. Alves
Paulo. H. Chiberio
Marcio. A. Correa
Wilson Acchar
author_sort Hugo. P. A. Alves
collection DOAJ
description Abstract In this study, we report an experimental investigation of the structural, morphological, and electrical properties of the ZrO2-Ag-Graphene sheet. In particular, we use the tape casting technique to produce the flexible ZrO2 ceramic sheet and impregnation and magnetron sputtering techniques to incorporate graphene and silver. Structural and morphological analyses indicate the presence of graphene and silver in the ceramic matrix, confirming the methods efficiency. We noticed that with the deposition of graphene and silver on the ZrO2 sheet, there is a decrease in electrical resistance. This fact is associated with the crystalline structure and morphology of graphene and silver, which makes sheets attractive in electrical applications. Thus, our results become fascinating for specific technological applications.
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language English
publishDate 2025-04-01
publisher Associação Brasileira de Cerâmica
record_format Article
series Cerâmica
spelling doaj-art-82e42e7ef15b4e6786c658bb59e94ca12025-08-20T03:17:14ZengAssociação Brasileira de CerâmicaCerâmica1678-45532025-04-017110.1590/hwod4272Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheetHugo. P. A. Alveshttps://orcid.org/0000-0003-3408-943XPaulo. H. ChiberioMarcio. A. CorreaWilson AccharAbstract In this study, we report an experimental investigation of the structural, morphological, and electrical properties of the ZrO2-Ag-Graphene sheet. In particular, we use the tape casting technique to produce the flexible ZrO2 ceramic sheet and impregnation and magnetron sputtering techniques to incorporate graphene and silver. Structural and morphological analyses indicate the presence of graphene and silver in the ceramic matrix, confirming the methods efficiency. We noticed that with the deposition of graphene and silver on the ZrO2 sheet, there is a decrease in electrical resistance. This fact is associated with the crystalline structure and morphology of graphene and silver, which makes sheets attractive in electrical applications. Thus, our results become fascinating for specific technological applications.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132025000100308&lng=en&tlng=enZrO2-Ag-Graphene sheettape castingimpregnationmagnetron sputteringelectrical response
spellingShingle Hugo. P. A. Alves
Paulo. H. Chiberio
Marcio. A. Correa
Wilson Acchar
Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
Cerâmica
ZrO2-Ag-Graphene sheet
tape casting
impregnation
magnetron sputtering
electrical response
title Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
title_full Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
title_fullStr Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
title_full_unstemmed Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
title_short Structural and electrical behavior of Ag nanolayer grown on graphene-doped ZrO2 sheet
title_sort structural and electrical behavior of ag nanolayer grown on graphene doped zro2 sheet
topic ZrO2-Ag-Graphene sheet
tape casting
impregnation
magnetron sputtering
electrical response
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132025000100308&lng=en&tlng=en
work_keys_str_mv AT hugopaalves structuralandelectricalbehaviorofagnanolayergrownongraphenedopedzro2sheet
AT paulohchiberio structuralandelectricalbehaviorofagnanolayergrownongraphenedopedzro2sheet
AT marcioacorrea structuralandelectricalbehaviorofagnanolayergrownongraphenedopedzro2sheet
AT wilsonacchar structuralandelectricalbehaviorofagnanolayergrownongraphenedopedzro2sheet