LICP OpenIR  > 清洁能源化学与材料实验室
2-Methylimidazole-Derived Ni-Co Layered Double Hydroxide Nanosheets as High Rate Capability and High Energy Density Storage Material in Hybrid Supercapacitors
Department清洁能源化学与材料实验室
Wang, Teng1; Zhang, Shengli1; Yan XB(阎兴斌)2; Miaoqiang Lyu3; Wang, Lianzhou3; John Bell1; Wang, Hongxia1; Yan XB(阎兴斌)
2017
Source PublicationACS Applied Materials and Interfaces
ISSN1944-8244
Volume9Issue:18Pages:15510-15524
Abstract

A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co layered double hydroxide (LDH) nanosheets, which grow directly on a flexible carbon fiber cloth (NiCo-LDH/CFC). Through using 2-methylimidazole as complex and methanol as solvent, the as-prepared NiCo-LDH/CFC shows a (003) facet preferential growth and an expanded interlayer spacing structure, resulting in a unique 3D porous nanostructure with a thickness of nanosheets of around 5–7 nm that shows high energy storage performance. By controlling the ratio of Ni/Co = 4:1 in the precursor solution, the electrode shows a specific capacitance of 2762.7 F g–1 (1243.2 C g–1) at a current density of 1 A g–1. Nevertheless, the optimal composition is obtained with Ni/Co = 1:1, which produces a specific capacitance of 2242.9 F g–1 (1009.3 C g–1) at 1 A g–1 and shows an excellent rate capability with 61% of the original capacitance being retained at a current density of 60 A g–1. The hybrid supercapacitor (HSC) based on the NiCo-LDH/CFC exhibits a maximum energy density of 59.2 Wh kg–1 and power densities of 34 kW kg–1, respectively. Long-term stability test shows that 82% of the original capacitance of the HSC remains after 5000 cycles. Importantly, the electrochemical performance of the solid-state flexible supercapacitors based on the prepared NiCo-LDH/CFC electrode showed a negligible change when the device was bent up to 180°. The performance of synthesized NiCo-LDH/CFC indicates the great potential of the material for delivering both high energy density and high power density in energy storage devices.

KeywordHybrid Supercapacitor Nico-ldh Nanosheets Binder-free Flexible Carbon Fiber Cloth Atomic Thickness
Subject Area材料科学与物理化学
DOI10.1021/acsami.7b02987
Funding Organizationhe Queensland University of Technology (QUT) for Postgraduate Research Award scholarships (QUTPRA);The data of XRD, SEM, FTIR, BET, and TEM reported in this Article were obtained at the Central Analytical Research Facility (CARF) operated by the Institute for Future Environments, QUT;Access to CARF is supported by generous funding from the Science and Engineering Faculty (QUT);AFM measurement by Dr. Jennifer Macleod (QUT) and EELS measurement by Dr. Hongwei Liu from Centre of Microscope & Microanalysis, University of Sydney;XPS was performed at the Queensland node of the Australian National Fabrication Facility and Australian Microscopy & Microanalysis Research Facility at the Centre for Microscopy and Microanalysis in the University of Queensland.
Indexed BySCI
If7.504
Language英语
Funding Project低维材料与化学储能研究组
compositor第二作者单位
Citation statistics
Cited Times:356[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/21912
Collection清洁能源化学与材料实验室
Corresponding AuthorWang, Hongxia; Yan XB(阎兴斌)
Affiliation1.School of Chemistry, Physics and Mechanical Engineering, Science and Engineering Faculty, Queensland University of Technology, Brisbane, Queensland 4001, Australia
2.Laboratory of Clean Energy Chemistry and Materials, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, People’s Republic of China
3.Nanomaterials Centre, School of Chemical Engineering and AIBN, The University of Queensland, St Lucia, Brisbane, Queensland 4072, Australia
Recommended Citation
GB/T 7714
Wang, Teng,Zhang, Shengli,Yan XB,et al. 2-Methylimidazole-Derived Ni-Co Layered Double Hydroxide Nanosheets as High Rate Capability and High Energy Density Storage Material in Hybrid Supercapacitors[J]. ACS Applied Materials and Interfaces,2017,9(18):15510-15524.
APA Wang, Teng.,Zhang, Shengli.,Yan XB.,Miaoqiang Lyu.,Wang, Lianzhou.,...&阎兴斌.(2017).2-Methylimidazole-Derived Ni-Co Layered Double Hydroxide Nanosheets as High Rate Capability and High Energy Density Storage Material in Hybrid Supercapacitors.ACS Applied Materials and Interfaces,9(18),15510-15524.
MLA Wang, Teng,et al."2-Methylimidazole-Derived Ni-Co Layered Double Hydroxide Nanosheets as High Rate Capability and High Energy Density Storage Material in Hybrid Supercapacitors".ACS Applied Materials and Interfaces 9.18(2017):15510-15524.
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