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国家自然科学基金(51272221)

作品数:7 被引量:12H指数:2
相关作者:王先友白艳松舒洪波高娇鞠博伟更多>>
相关机构:湘潭大学湖南工业大学湖南三鑫电源科技有限责任公司更多>>
发文基金:国家自然科学基金国家教育部博士点基金更多>>
相关领域:电气工程一般工业技术化学工程理学更多>>

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Effects of preparation temperature on electrochemical performance of nitrogen-enriched carbons被引量:1
2014年
The activated nitrogen-enriched novel carbons (NENCs) were prepared by direct carbonization using polyaniline coating activated mesocarbon microbead composites as the precursor. Herein the influences of the carbonization temperature on the structure and morphology of the NENCs samples were investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and N2 adsorption/desorption isotherm at 77 K. The electrochemical properties of the supercapacitors were characterized by cyclic voltammetry, galvanostatic charge/discharge, electrochemical impedance spectroscopy (EIS), cycle life, leakage current and self-discharge measurements in 6 mol/L KOH solution. The results demonstrate that the NENC samples carbonized at 600 °C show the highest specific capacitance of 385 F/g at the current density of 1 A/g and the lowest ESR value (only 0.93?). Furthermore, the capacity retention ratio of the NENCs-600 supercapacitor is 92.8 % over 2500 cycles.
吴春王先友赵青蓝高娇白艳松舒洪波
关键词:SUPERCAPACITOR
Preparation and performance of hierarchically porous carbons as oxygen electrodes for lithium oxygen batteries被引量:1
2013年
The hierarchically porous carbons (HPCs) were prepared by sol-gel selassembly technology in different surfactant concentrations and were used as the potential electrode for lithium oxygen batteries. The physical and electrochemical properties of the as-prepared HPCs were investigated by filed emission scanning electron microscopy (FE-SEM), transmission electron microscopy (TEM), nitrogen adsorption-desorption isotherm and galvanostatic charge/discharge. The results indicate that all of the HPCs mainly possess mesoporous structure with nearly similar pore size distribution. Using the HPCs as the electrode, a high discharge capacity for lithium oxygen battery can be achieved, and the discharge capacity increases with the specific surface area. Especially, the HPCs-3 oxygen electrode with CTAB concentration of 0.27 mol/L exhibits good capacity retention through controlling discharge depth to 800 mA·h/g and the highest discharge capacity of 2050 mA·h/g at a rate of 0.1 mA/cm2.
宋云峰王先友白艳松王灏胡本安舒洪波杨秀康易兰花鞠博伟张小艳
铅酸电池负极加碳后循环性能被引量:1
2016年
通过将高比表面积电化学活性碳和石墨加入到铅酸电池的负极活性物质中,制备成新型铅碳负极,研究其在高倍率部分荷电状态(HRPSOC)下的循环性能。采用激光粒度仪、扫描电镜(SEM)、充放电机分别对材料和电池进行表征和测试。结果表明:碳的加入极大地提高于电池在高倍率部分荷电态下工作的循环寿命,其中以石墨和活性的性能碳混合加入时循环性能最好,循环次数达到85402次。SEM结果表明:碳材料的加入能有效抑制铅酸电池负极在大电流放电时的不可逆硫酸盐化。
王练武王先友黄伟国童庆王良勇
关键词:活性碳循环寿命
Free-standing ternary metallic sulphides/Ni/C-nanofiber anodes for high-performance lithium-ion capacitors被引量:3
2020年
As a promising energy-storage device,the hybrid lithium-ion capacitor coupling with both a large energy density battery-type anode and a high power density capacitor-type cathode is attracting great attention.For the sake of improving the energy density of hybrid lithium-ion capacitor,the free-standing anodes with good electrochemical performance are essential.Herein,we design an effective electrospinning strategy to prepare free-standing MnS/Co4S3/Ni3S2/Ni/C-nanofibers(TMSs/Ni/C-NFs)film and firstly use it as a binder-free anode for hybrid lithium-ion capacitor.We find that the carbon nanofibers can availably prevent MnS/Co4S3/Ni3S2/Ni nanoparticles from aggregation as well as significantly improve the electrochemical performance.Therefore,the binder-free TMSs/Ni/C-NFs membrane displays an ultrahigh reversible capacity of 1246.9 m Ah g-1at 100 m A g-1,excellent rate capability(398 mAh g-1 at2000 mA g-1),and long-term cyclic endurance.Besides,we further assemble the hybrid lithium-ion capacitor,which exhibits a high energy density of 182.0 Wh kg-1at 121.1 W kg-1(19.0 Wh kg-1 at 3512.5 W kg-1)and remarkable cycle life.
Ting XingYinghui OuyangLiping ZhengXianyou WangHong LiuManfang ChenRuizhi YuXingyan WangChun Wu
关键词:FREE-STANDINGTERNARYMETALLICSULPHIDESLITHIUM-ION
豆渣活性炭孔结构对锂硫电池性能的影响被引量:2
2017年
以固体废弃物豆渣为原料,采用化学活化法制备了不同孔结构的活性炭,并以活化后的碳材料负载硫作为锂硫电池的正极材料。采用X射线衍射、扫描电镜、热重和比表面分析仪对复合材料进行结构、形貌和孔径分析,通过充放电性能测试对锂硫电池进行电化学性能分析。电化学测试结果表明,DZC/S-5复合材料在0.1C电流密度下首次放电比容量可达1 238.9mA/h,经过100次循环后,比容量保持了871.3mAh/g,平均每循环仅衰减了0.29%,库伦效率约95%,表现了最佳的电化学性能。
向楷雄王先友陈晗胡俊
关键词:锂硫电池豆渣孔结构复合材料
超级电容器自支撑电极材料的制备及性能研究
随着对电化学能源储存/转换设备的需求迅速增长,超级电容器因充/放电速度快,无记忆效应,大电流放电能力超强及功率密度高等诸多优点,而在各种储能器件中占有一席之地。但低的能量密度严重限制了其大规模产业化应用。为了获得高的能量...
邢婷
关键词:超级电容器过渡金属化合物
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纳米棒β-MnO_2@纳米片(Ni,Co,Mn)氧化物复合物的制备及其性能研究
过渡金属氧化物的合理设计和简易合成是改善超级电容应用的有效方法。故本文采用一种新的且简易的原位生长合成法,成功地合成了以纳米棒β-MnO_2为核和纳米片镍钴锰氧化物(NCMO)为壳的层次结构过渡金属氧化物。结果表明氧化物...
舒洪波王灏文芳陈曼芳付艳青王先友
关键词:超级电容器过渡金属氧化物
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竹笋壳基多孔活性炭的制备及其超级电容性能
<正>活性炭由于具有比表面积高、孔隙结构发达、成本低廉、化学以及热稳定性良好等优点,而成为超级电容器首选电极材料。目前,生产活性炭的原料主要是化石燃料和木材、果壳等。然而,化石燃料是有限的,且不可再生;过度砍伐森林将会导...
张友为王先友高姣刘佳鲁群陈曼芳付艳青蔡思宇
关键词:超级电容器
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球形富锂层状-尖晶石复合结构正极材料的制备及其性能研究
富锂层状正极材料具有高容量和低成本等优点,而尖晶石型材料具有可快速导Li~+的三维隧道结构,基于综合层状和尖晶石结构的设计理念,本文采用溶剂热-固相法制备出均匀、规则的富锂层状-尖晶石结构0.5LiMnO_3·0.5Li...
杨秀康王迪余睿智葛龙王先友
关键词:正极材料尖晶石结构容量保持率复合结构
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Spherical FeF3·0.33H2O/MWCNTs nanocomposite with mesoporous structure as cathode material of sodium ion battery被引量:2
2018年
FeF3·0.33H2O crystallizes in hexagonal tungsten bronze structure with more opened hexagonal cavities are considered as next generation electrode materials of both lithium ion battery and sodium ion battery.In this paper the mesoporous spherical FeF3·0.33H2O/MWCNTs nanocomposite was successfully synthesized via a one-step solvothermal approach. Galvanostatic measurement showed that the performances of sodium ion batteries(SIBs) using FeF3·0.33H2O/MWCNTs as cathode material were highly dependent on the morphology and size of the as-prepared materials. Benefitting from the special mesoporous structure features, FeF3·0.33H2O/MWCNTs nanocomposite exhibits much better electrochemical performances in terms of initial discharge capacity(350.4 mAh g-1) and cycle performance(123.5 mAh g-1 after 50 cycles at 0.1 C range from 1.0 V to 4.0 V) as well as rate capacity(123.8 mAh g-1 after 25 cycles back to 0.1 C). The excellent electrochemical performance enhancement can be attributed to the synergistic effect of the mesoporous structure and the MWCNTs conductive network, which can effectively increase the contact area between the active materials and the electrolyte, shorten the Na+ diffusion pathway,buffer the volume change during cycling/discharge process and improve the structure stability of the FeF3·0.33H2O/MWCNTs nanocomposite.
Shuangying WeiXianyou WangMin LiuRui ZhangGang WangHai Hu
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