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


ABSTRACT: Mass production of high-quality graphene nanosheets (GNs) is essential for practical applications. We report that oxidation of graphite by low concentration KMnO? 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??N?) could be spontaneously intercalated into EOG to form intercalated EOG-C??N? compounds. Gentle and short-time sonication of EOG-C??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??m to >100??m. 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.

SUBMITTER: Wei L 

PROVIDER: S-EPMC3769650 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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

Wei Liangming L   Wu Fei F   Shi Diwen D   Hu Changchen C   Li Xiaolin X   Yuan Weien W   Wang Jian J   Zhao Jiang J   Geng Huijuan H   Wei Hao H   Wang Ying Y   Hu Nantao N   Zhang Yafei Y  

Scientific reports 20130101


Mass production of high-quality graphene nanosheets (GNs) is essential for practical applications. We report that oxidation of graphite by low concentration KMnO₄ 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 (C₁₄N⁺) could be spontaneously intercalated into EOG to form intercalat  ...[more]

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