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国家自然科学基金(51362018)

作品数:7 被引量:14H指数:2
相关作者:李晓明冉奋汪勇罗永春孔令斌更多>>
相关机构:兰州理工大学更多>>
发文基金:国家自然科学基金中国博士后科学基金更多>>
相关领域:电气工程理学化学工程一般工业技术更多>>

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7 条 记 录,以下是 1-9
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Preparation of nano-PANI@MnO_2 by surface initiated polymerization method using as a nano-tubular electrode material:The amount effect of aniline on the microstructure and electrochemical performance被引量:1
2015年
In this study,nano-polyanline and manganese oxide nanometer tubular composites(nano-PANI@MnO2)were prepared by a surface initiated polymerization method and used as electrochemical capacitor electrode materials; and the effect of aniline amount on the microstructure and electrochemical performance was investigated. The microstructures and surface morphologies of nano-PANI@MnO2 were characterized by X-ray diffraction,scanning electron microscopy and fourier transformation infrared spectroscope. The electrochemical performance of these composite materials was performed with cyclic voltammetry,charge–discharge test and electrochemical impedance spectroscopy,respectively. The results demonstrate that the feed ratio of aniline to MnO2 played a very important role in constructing the hierarchically nano-structure,which would,hence,determine the electrochemical performance of the materials. Using the templateassisted strategy and controlling the feed ratio of aniline to MnO2,the nanometer tubular structure of nanoPANI@MnO2 was obtained. A maximum specific capacitance of 386 F/g was achieved in aqueous 1 mol/L Na NO3 electrolyte with the potential range from 0 to 0.6 V(vs. SCE).
Fen RanYunlong YangLei ZhaoXiaoqin NiuDingjun ZhangLingbin KongYongchun LuoLong Kang
嵌段共聚物直接热解法制备介孔炭材料及其在超级电容器中的应用(英文)被引量:1
2015年
以嵌段共聚物为前驱体,通过直接热解聚丙烯腈嵌段苯乙烯(PAN-b-PS-b-PAN)制备新型纳米多孔炭材料。炭材料制备依赖于嵌段共聚物分子的设计,而分子量可控、分布范围较窄的嵌段共聚物则通过可逆加成链转移(RAFT)聚合方法合成。所制炭材料不仅具有较高的比表面积(950 m^2·g^-1),且在2~4 nm的介孔范围内孔径得到良好的控制。此外,作为电极材料在2 mol/L KOH电解液中表现出高的比容量(185 F·g^-1,电流密度为0.625 A·g^-1),且显示较好的循环寿命,经10 000次循环后,能够保持初始比容量的97.5%。通过不同分子量聚合物的设计,制备结构新颖的多孔炭材料,可应用于高性能超级电容器。
汪勇孔令斌李晓明冉奋罗永春康龙
关键词:嵌段共聚物能量存储超级电容器
A dandelion-like carbon microsphere/MnO_2 nanosheets composite for supercapacitors被引量:1
2014年
This article reported the electrochemical performance of a novel cabon microsphere/MnO2nanosheets(CMS/MnO2) composite prepared by a in situ self-limiting deposition method under hydrothermal condition. The results of scanning electron microscopy(SEM) and transmission electron microscopy(TEM) revealed that MnO2nanosheets homogeneously grew onto the surface of CMS to form a loose-packed and dandelion-like core/shell microstructure. The unique microstructure plays a basic role in electrochemical accessibility of electrolyte to MnO2active material and a fast diffusion rate within the redox phase. The results of cyclic voltammetry, galvanostatic charge/discharge and electrochemical impedance spectrometry indicated that the prepared CMS/MnO2composite presented high capacitance of 181 F g-1and long cycle life of 61% capacity retention after 2000 charge/discharge cycles in 1 mol/L Na2SO4solution, which show strong promise for high-rate electrochemical capacitive energy storage applications.
Xuanxuan ZhangFen RanHuili FanYongtao TanLei ZhaoXiaoming LiLingbin KongLong Kang
Microporous carbon nanofibers prepared by combining electrospinning and phase separation methods for supercapacitor被引量:5
2016年
Microporous carbon nanofibers (MCNFs) derived from polyacrylonitrile nanofibers were fabricated via electrospinning technology and phase separation in the presence of polyvinylpyrrolidone (PVP). PVP together with a mixed solvent of N, N-Dimethylformamide and dimethyl sulfoxide was used as pore forming agent. The influences of PVP content in casting solution on the structure and electrochemical performance of the MCNFs were also investigated. The highest capacitance of 200 F/g was obtained on a three-electrode system at a scan rate of 0.5 A/g. The good performance was owing to the high specific surface area and the large amount of micro-pores, which enhanced the absorption and the transportation efficiency of electrolyte ion during charge/discharge process. This research indicated that the combination of electrospinning and phase separation technology could be used to fabricate microporous carbon nanofibers as electrode materials for supercapacitors with high specific surface area and outstanding electrochemical performance. (C) 2016 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. and Science Press. All rights reserved.
Chang LiuYongtao TanYing LiuKuiwen ShenBowu PengXiaoqin NiuFen Ran
关键词:SUPERCAPACITORELECTROSPINNINGNANOFIBER
The design and fabrication of Co3O4/Co3V2O8/Ni nanocomposites as high-performance anodes for Li-ion batteries被引量:1
2017年
The CoO/CoVO/Ni nanocomposites were rationally designed and prepared by a two-step hydrothermal synthesis and subsequent annealing treatment. The one-dimensional(1D) CoOnanowire arrays directly grew on Ni foam, whereas the 1D CoVOnanowires adhered to parts of CoOnanowires.Most of the hybrid nanowires were inlayed with each other, forming a 3D hybrid nanowires network.As a result, the discharge capacity of CoO/CoVO/Ni nanocomposites could reach 1201.8 mAh/g after100 cycles at 100 mA/g. After 600 cycles at 1 A/g, the discharge capacity was maintained at 828.1 mAh/g.Moreover, even though the charge/discharge rates were increased to 10 A/g, it rendered reversible capacity of 491.2 mAh/g. The superior electrochemical properties of nanocomposites were probably ascribed to their unique 3D architecture and the synergistic effects of two active materials. Therefore, such CoO/CoVO/Ni nanocomposites could potentially be used as anode materials for high-performance Li-ion batteries.
Yang LiLingbin KongMaocheng LiuWeibin ZhangLong Kang
关键词:CO3O4NANOCOMPOSITES
Hollow Carbon Microspheres/MnO_2 Nanosheets Composites:Hydrothermal Synthesis and Electrochemical Behaviors被引量:4
2015年
This article reported the electrochemical behaviors of a novel hollow carbon microspheres/manganese dioxide nanosheets(micro-HC/nano-MnO2) composite prepared by an in situ self-limiting deposition method under hydrothermal condition. The results of scanning electron microscopy reveal that MnO2 nanosheets homogeneously grow onto the surface of micro-HC to form a loose-packed microstructure. The quantity of MnO2 required in the electrode layer has thereby been reduced significantly, and higher specific capacitances have been achieved. The micro-HC/nano-MnO2 electrode presents a high capacitance of 239.0 F g-1 at a current density of 5 m A cm-2, which is a strong promise for high-rate electrochemical capacitive energy storage applications.
Hui-li FanFen RanXuan-xuan ZhangHai-ming SongXiao-qin NiuLing-bin KongLong Kang
关键词:SUPERCAPACITOR
A hierarchical porous carbon membrane from polyacrylonitrile/polyvinylpyrrolidone blending membranes: Preparation,characterization and electrochemical capacitive performance被引量:1
2014年
Novel hierarchical porous carbon membranes were fabricated through a simple carbonization procedure of well-defined blending polymer membrane precursors containing the source of carbon polyacrylonitrile (PAN) and an additive of polyvinylpyrrolidone (PVP), which was prepared using phase inversion method. The as-fabricated materials were further used as the active electrode materials for supercapacitors. The effects of PVP concentration in the casting solution on structure feature and electrochemical capacitive performance of the as-prepared carbon membranes were also studied in detail. As the electrode material for supercapacitor, a high specific capacitance of 278.0 F/g could be attained at a current of 5 mA/cm2 and about 92.90% capacity retention could be maintained after 2000 charge/discharge cycles in 2 mol/L KOH solution with a PVP concentration of 0.3 wt% in the casting solution. The facile hierarchical pore structure preparation method and the good electrochemical capacitive performance make the prepared carbon membrane particularly promising for use in supercapacitor.
Huili FanFen RanXuanxuan ZhangHaiming SongWenxia JingKuiwen ShenLingbin KongLong Kang
关键词:SUPERCAPACITORSADDITIVE
纳米金对非碳基电极材料电化学性能的影响研究
超级电容器作为新型的储能器件,具有放电时间快、循环寿命长、功率密度高等优点受到研究者的广泛关注。相比于双电层储能的碳材料,金属氧化物和导电聚合物作为典型的赝电容电极材料,其比电容和能量密度较高;然而赝电容电极材料低的电导...
谭永涛
关键词:超级电容器导电聚合物金属氧化物金纳米颗粒电化学性能
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LiMoS2与VN纳米颗粒作为锂离子电容器负极材料的电化学性能的研究
锂离子电容器(LIC),亦称锂离子混合型超级电容器,是一种介于锂离子电池和超级电容器之间的新型的能量储存装置,它同时兼具了超级电容器的高功率密度及锂离子电池的高能量密度,具有快速的充放电性能、优秀的循环稳定性、外形轻巧易...
刘文超
关键词:负极材料电化学性能
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