Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology

The Hummers’ method is used to prepare graphene oxide and graphene powder, and the obtained powder material contains a large amount of oxygen-containing groups. Due to the effect of strong oxidants, there are many defects on the graphene body. Although a large number of oxygen-containing groups are...

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Main Authors: Junwei An, Chen Wen, Chuping Chen, Xiaolin Qiu
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2021/8894830
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author Junwei An
Chen Wen
Chuping Chen
Xiaolin Qiu
author_facet Junwei An
Chen Wen
Chuping Chen
Xiaolin Qiu
author_sort Junwei An
collection DOAJ
description The Hummers’ method is used to prepare graphene oxide and graphene powder, and the obtained powder material contains a large amount of oxygen-containing groups. Due to the effect of strong oxidants, there are many defects on the graphene body. Although a large number of oxygen-containing groups are reduced by the reduction reaction, the defects of the graphene body are numerous, which has a great influence on the conductivity of graphene and also limits the high carrier transport capability and application of graphene itself. Using industrial means, the graphene powder is highly reduced, and the ultrathin graphene powder is obtained, the graphene powder has extremely low impurity content, and the defects are substantially completely reduced. Then, these lay the foundation for its application in the battery industry.
format Article
id doaj-art-17a2bbd3931446b6aed84df178c13058
institution OA Journals
issn 1110-662X
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language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series International Journal of Photoenergy
spelling doaj-art-17a2bbd3931446b6aed84df178c130582025-08-20T02:02:28ZengWileyInternational Journal of Photoenergy1110-662X1687-529X2021-01-01202110.1155/2021/88948308894830Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming TechnologyJunwei An0Chen Wen1Chuping Chen2Xiaolin Qiu3Nanchang Institute of Technology, Nan Chang, 330013, ChinaBeijing Spacecrafts, China Academy of Space Technology, Beijing, ChinaSchool of Material Science and Engineering, Beijing Institute of Petrochemical Technology, Beijing, ChinaNanchang Institute of Technology, Nan Chang, 330013, ChinaThe Hummers’ method is used to prepare graphene oxide and graphene powder, and the obtained powder material contains a large amount of oxygen-containing groups. Due to the effect of strong oxidants, there are many defects on the graphene body. Although a large number of oxygen-containing groups are reduced by the reduction reaction, the defects of the graphene body are numerous, which has a great influence on the conductivity of graphene and also limits the high carrier transport capability and application of graphene itself. Using industrial means, the graphene powder is highly reduced, and the ultrathin graphene powder is obtained, the graphene powder has extremely low impurity content, and the defects are substantially completely reduced. Then, these lay the foundation for its application in the battery industry.http://dx.doi.org/10.1155/2021/8894830
spellingShingle Junwei An
Chen Wen
Chuping Chen
Xiaolin Qiu
Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
International Journal of Photoenergy
title Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
title_full Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
title_fullStr Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
title_full_unstemmed Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
title_short Structural Defects of Graphene Oxidation Reduction and Its High-Efficiency Structural Reforming Technology
title_sort structural defects of graphene oxidation reduction and its high efficiency structural reforming technology
url http://dx.doi.org/10.1155/2021/8894830
work_keys_str_mv AT junweian structuraldefectsofgrapheneoxidationreductionanditshighefficiencystructuralreformingtechnology
AT chenwen structuraldefectsofgrapheneoxidationreductionanditshighefficiencystructuralreformingtechnology
AT chupingchen structuraldefectsofgrapheneoxidationreductionanditshighefficiencystructuralreformingtechnology
AT xiaolinqiu structuraldefectsofgrapheneoxidationreductionanditshighefficiencystructuralreformingtechnology