Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance

Silicon-based contaminants are ubiquitous in natural graphite, and they are thus expected to be present in exfoliated graphene. Here, the authors show that such impurities play a non-negligible role in graphene-based devices, and use high-purity parent graphite to boost the performance of graphene s...

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Autores principales: Rouhollah Jalili, Dorna Esrafilzadeh, Seyed Hamed Aboutalebi, Ylias M. Sabri, Ahmad E. Kandjani, Suresh K. Bhargava, Enrico Della Gaspera, Thomas R. Gengenbach, Ashley Walker, Yunfeng Chao, Caiyun Wang, Hossein Alimadadi, David R. G. Mitchell, David L. Officer, Douglas R. MacFarlane, Gordon G. Wallace
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/1105a779b91243f99c4d1c117bf9e4f9
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spelling oai:doaj.org-article:1105a779b91243f99c4d1c117bf9e4f92021-12-02T14:40:44ZSilicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance10.1038/s41467-018-07396-32041-1723https://doaj.org/article/1105a779b91243f99c4d1c117bf9e4f92018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07396-3https://doaj.org/toc/2041-1723Silicon-based contaminants are ubiquitous in natural graphite, and they are thus expected to be present in exfoliated graphene. Here, the authors show that such impurities play a non-negligible role in graphene-based devices, and use high-purity parent graphite to boost the performance of graphene sensors and supercapacitor microelectrodes.Rouhollah JaliliDorna EsrafilzadehSeyed Hamed AboutalebiYlias M. SabriAhmad E. KandjaniSuresh K. BhargavaEnrico Della GasperaThomas R. GengenbachAshley WalkerYunfeng ChaoCaiyun WangHossein AlimadadiDavid R. G. MitchellDavid L. OfficerDouglas R. MacFarlaneGordon G. WallaceNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rouhollah Jalili
Dorna Esrafilzadeh
Seyed Hamed Aboutalebi
Ylias M. Sabri
Ahmad E. Kandjani
Suresh K. Bhargava
Enrico Della Gaspera
Thomas R. Gengenbach
Ashley Walker
Yunfeng Chao
Caiyun Wang
Hossein Alimadadi
David R. G. Mitchell
David L. Officer
Douglas R. MacFarlane
Gordon G. Wallace
Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
description Silicon-based contaminants are ubiquitous in natural graphite, and they are thus expected to be present in exfoliated graphene. Here, the authors show that such impurities play a non-negligible role in graphene-based devices, and use high-purity parent graphite to boost the performance of graphene sensors and supercapacitor microelectrodes.
format article
author Rouhollah Jalili
Dorna Esrafilzadeh
Seyed Hamed Aboutalebi
Ylias M. Sabri
Ahmad E. Kandjani
Suresh K. Bhargava
Enrico Della Gaspera
Thomas R. Gengenbach
Ashley Walker
Yunfeng Chao
Caiyun Wang
Hossein Alimadadi
David R. G. Mitchell
David L. Officer
Douglas R. MacFarlane
Gordon G. Wallace
author_facet Rouhollah Jalili
Dorna Esrafilzadeh
Seyed Hamed Aboutalebi
Ylias M. Sabri
Ahmad E. Kandjani
Suresh K. Bhargava
Enrico Della Gaspera
Thomas R. Gengenbach
Ashley Walker
Yunfeng Chao
Caiyun Wang
Hossein Alimadadi
David R. G. Mitchell
David L. Officer
Douglas R. MacFarlane
Gordon G. Wallace
author_sort Rouhollah Jalili
title Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
title_short Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
title_full Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
title_fullStr Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
title_full_unstemmed Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
title_sort silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/1105a779b91243f99c4d1c117bf9e4f9
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