Systematic study on structural and electronic properties of diamine/triamine functionalized graphene networks for supercapacitor application

Bo Song, Jingxiang Zhao, Mingjun Wang, Jeffrey Mullavey, Yuntong Zhu, Zhishuai Geng, Dongchang Chen, Yong Ding, Kyoung sik Moon*, Meilin Liu, Ching Ping Wong

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

132 引用 (Scopus)

摘要

In this report, a series of diamine/traimine molecules were selected to make different functionalized graphene networks using a facile two-step hydrothermal method. The molecular level grafting of amines to graphene surface via covalent bonds was confirmed by FTIR and XPS. XRD patterns revealed that these amine molecules served as molecular spacers to enlarge the interlayer spacing and the specific surface area. Upon functionalization, the interlayer spacing values varied from 0.84 to 1.23 nm, and the spacing was found to change negligibly after the GO reduction, implying the high stability of the 3D graphene nanostructure. The influence of chain conformation and degree of functionalization on molecular spacing was also discussed. The as-fabricated graphene composite exhibited an improved capacitance in aqueous and organic electrolytes with less than 10% capacitance decay during 10,000 charge/discharge cycles and fast ionic diffusion features. The composite also delivered a maximum capacitance of 119 F/g in ionic liquid electrolyte with an ultrahigh energy density of 51 Wh/kg and slow self-discharge rate. Furthermore, computational study was performed to model the electron distribution and band gap structures of graphene networks. The use of aliphatic amine spacers could better elucidate the correlation between spacing effect and electrical double-layer capacitance.

源语言英语
页(从-至)183-193
页数11
期刊Nano Energy
31
DOI
出版状态已出版 - 1 1月 2017
已对外发布

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