Cargando…

Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene

Mass production of high-quality graphene nanosheets (GNs) is essential for practical applications. We report that oxidation of graphite by low concentration KMnO(4) at relatively high temperature (60°C) leads to edge-selectively oxidized graphite (EOG) which preserves the high crystalline graphitic...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Liangming, Wu, Fei, Shi, Diwen, Hu, Changchen, Li, Xiaolin, Yuan, Weien, Wang, Jian, Zhao, Jiang, Geng, Huijuan, Wei, Hao, Wang, Ying, Hu, Nantao, Zhang, Yafei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3769650/
https://www.ncbi.nlm.nih.gov/pubmed/24022463
http://dx.doi.org/10.1038/srep02636
_version_ 1782284013445054464
author Wei, Liangming
Wu, Fei
Shi, Diwen
Hu, Changchen
Li, Xiaolin
Yuan, Weien
Wang, Jian
Zhao, Jiang
Geng, Huijuan
Wei, Hao
Wang, Ying
Hu, Nantao
Zhang, Yafei
author_facet Wei, Liangming
Wu, Fei
Shi, Diwen
Hu, Changchen
Li, Xiaolin
Yuan, Weien
Wang, Jian
Zhao, Jiang
Geng, Huijuan
Wei, Hao
Wang, Ying
Hu, Nantao
Zhang, Yafei
author_sort Wei, Liangming
collection PubMed
description Mass production of high-quality graphene nanosheets (GNs) is essential for practical applications. We report that oxidation of graphite by low concentration KMnO(4) at relatively high temperature (60°C) leads to edge-selectively oxidized graphite (EOG) which preserves the high crystalline graphitic structure on its basal planes while the edges are functionalized by oxygen-containing groups. Long-chain tetradecyl-ammonium salt (C(14)N(+)) could be spontaneously intercalated into EOG to form intercalated EOG-C(14)N(+) compounds. Gentle and short-time sonication of EOG-C(14)N(+) in toluene can full exfoliate EOG into edge-oxidized graphene nanosheets (EOGNs) with concentration of 0.67 mg/ml, monolayer population up to 90% and lateral size from 1 μm to >100 μm. The EOG and EOGN films show excellent electrical conductance, which is far superior to their graphene oxide (GO) counterparts. Our method provides an efficient way to produce high-quality GNs, and the resultant EOG also can be directly used for production of multifunctional materials and devices.
format Online
Article
Text
id pubmed-3769650
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-37696502013-09-11 Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene Wei, Liangming Wu, Fei Shi, Diwen Hu, Changchen Li, Xiaolin Yuan, Weien Wang, Jian Zhao, Jiang Geng, Huijuan Wei, Hao Wang, Ying Hu, Nantao Zhang, Yafei Sci Rep Article Mass production of high-quality graphene nanosheets (GNs) is essential for practical applications. We report that oxidation of graphite by low concentration KMnO(4) at relatively high temperature (60°C) leads to edge-selectively oxidized graphite (EOG) which preserves the high crystalline graphitic structure on its basal planes while the edges are functionalized by oxygen-containing groups. Long-chain tetradecyl-ammonium salt (C(14)N(+)) could be spontaneously intercalated into EOG to form intercalated EOG-C(14)N(+) compounds. Gentle and short-time sonication of EOG-C(14)N(+) in toluene can full exfoliate EOG into edge-oxidized graphene nanosheets (EOGNs) with concentration of 0.67 mg/ml, monolayer population up to 90% and lateral size from 1 μm to >100 μm. The EOG and EOGN films show excellent electrical conductance, which is far superior to their graphene oxide (GO) counterparts. Our method provides an efficient way to produce high-quality GNs, and the resultant EOG also can be directly used for production of multifunctional materials and devices. Nature Publishing Group 2013-09-11 /pmc/articles/PMC3769650/ /pubmed/24022463 http://dx.doi.org/10.1038/srep02636 Text en Copyright © 2013, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareALike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Article
Wei, Liangming
Wu, Fei
Shi, Diwen
Hu, Changchen
Li, Xiaolin
Yuan, Weien
Wang, Jian
Zhao, Jiang
Geng, Huijuan
Wei, Hao
Wang, Ying
Hu, Nantao
Zhang, Yafei
Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title_full Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title_fullStr Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title_full_unstemmed Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title_short Spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
title_sort spontaneous intercalation of long-chain alkyl ammonium into edge-selectively oxidized graphite to efficiently produce high-quality graphene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3769650/
https://www.ncbi.nlm.nih.gov/pubmed/24022463
http://dx.doi.org/10.1038/srep02636
work_keys_str_mv AT weiliangming spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT wufei spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT shidiwen spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT huchangchen spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT lixiaolin spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT yuanweien spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT wangjian spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT zhaojiang spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT genghuijuan spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT weihao spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT wangying spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT hunantao spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene
AT zhangyafei spontaneousintercalationoflongchainalkylammoniumintoedgeselectivelyoxidizedgraphitetoefficientlyproducehighqualitygraphene