CAS OpenIR  > 中科院上海应用物理研究所2011-2020年
Synthesis of Few-Layer Reduced Graphene Oxide for Lithium-Ion Battery Electrode Materials
Li, JH; Li, LF; Zhang, BW; Yu, M; Ma, HJ; Zhang, JY; Zhang, C; Li, JY; jingyeli@sinap.ac.cn
2014
Source PublicationINDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH
ISSN0888-5885
Volume53Issue:34Pages:13348—13355
AbstractWe report here a rapid and cost-effective approach to synthesize few-layer reduced graphene oxide (FL-RGO) in graphene oxide solution using EDA as a reducing agent and a cross-linker, and where the resulting FL-RGO was characterized by means of AFM, TEM, XPS, UV-vis, and XRD spectroscopies. A mechanism for forming the FL-RGO via removal of epoxide and hydroxyl groups from GO and stitching of the GO sheets by EDA in a water solution was proposed. FL-RGO was also tested as the electrolyte for a Li+-ion battery and showed advantages with a 346 mAh g(-1) capacity at a charge/discharge current density of 1C even after 60 cycles, which is comparable to the theoretical capacity of the graphite (372 inAh g(-1)).
KeywordGraphite Oxide Carbon Nanotubes Anode Material Nanostructured Materials Chemical-reduction Energy-conversion Storage Devices Cycle Stability Li Storage Nanosheets
Indexed BySCI
Language英语
WOS IDWOS:000340992000014
Citation statistics
Cited Times:24[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.sinap.ac.cn/handle/331007/14459
Collection中科院上海应用物理研究所2011-2020年
Corresponding Authorjingyeli@sinap.ac.cn
Recommended Citation
GB/T 7714
Li, JH,Li, LF,Zhang, BW,et al. Synthesis of Few-Layer Reduced Graphene Oxide for Lithium-Ion Battery Electrode Materials[J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,2014,53(34):13348—13355.
APA Li, JH.,Li, LF.,Zhang, BW.,Yu, M.,Ma, HJ.,...&jingyeli@sinap.ac.cn.(2014).Synthesis of Few-Layer Reduced Graphene Oxide for Lithium-Ion Battery Electrode Materials.INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,53(34),13348—13355.
MLA Li, JH,et al."Synthesis of Few-Layer Reduced Graphene Oxide for Lithium-Ion Battery Electrode Materials".INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 53.34(2014):13348—13355.
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