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国家自然科学基金(21103089)

作品数:2 被引量:2H指数:1
相关作者:王月芳邵宗平蔡锐更多>>
相关机构:南京工业大学更多>>
发文基金:国家自然科学基金江苏省基础研究计划更多>>
相关领域:电气工程理学更多>>

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电缆结构SnO2/碳纳米管复合物的制备与性能研究
随着储能系统及动力汽车对锂离子电池的要求,开发具有高容量、高倍率性能及长寿命的锂离子电池已追在眉睫。负极材料是影响锂离子电池性能的关键之一,相对于石墨负极材料的低容量(372 mAh/g),Si基材料、Sn及材料及过渡金...
蒋思敏蔡锐邵宗平
关键词:锂离子电池碳纳米管碳包覆
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3D amorphous carbon and graphene co-modified LiFePO_4 composite derived from polyol process as electrode for high power lithium-ion batteries
2014年
Amorphous carbon and graphene co-modified LiFePO4 nanocomposite has been synthesized via a facile polyol process in connection with a following thermal treatment.Various characterization techniques,including XRD.Mossbauer spectra,Raman spectra,SEM,TEM,BET,O2-TPO,galvano charge-discharge,CV and EIS were applied to investigate the phase composition,carbon content,morphological structure and electrochemical performance of the synthesized samples.The effect of introducing way of carbon sources on the properties and performance of LiFePO4/C/graphene composite was paid special attention.Under optimized synthetic conditions,highly crystalized olivine-type LiFePO4was successfully obtained with electron conductive Fe2P and FeP as the main impurity phases.SEM and TEM analyses demonstrated the graphene sheets were randomly distributed inside the sample to create an open structured LiFePO4 with respect to graphene,while the glucosederived carbon mainly coated over LiFeP04 particles which effectively connected the graphene sheets and LiFePO4 particles to result in a more efficient charge transfer process.As a result,favorable electrochemical performance was achieved.The performance of the amorphous carbon-graphene co-modified LiFePO4 was further progressively improved upon cycling in the first 200 cycles to reach a reversible specificcapacity as high as 97 mAh·g-1 at 10 C rate.
Guan WuRan RanBote ZhaoYujing ShaChao SuYingke ZhouZongping Shao
关键词:GRAPHENE
LiFePO_4锂电池正极材料的共碳包覆和Mn掺杂的改性被引量:2
2012年
采用高能球磨辅助固相法制备碳包覆并掺杂Mn的LiFePO4正极材料LiFe1-xMnxPO4(x=0.04、0.05、0.06和0.07)。通过X线衍射光谱仪(XRD)、场发射扫描电子显微镜(FESEM)、比表面积(BET)及恒流充放电等测试手段考察Mn的掺杂量及碳的包覆量对LiFePO4的结构、形貌及电化学性能的影响,最终确定优化条件。结果表明:Mn掺杂量x=0.06及碳的前驱体(蔗糖)添加量为LiFe0.94Mn0.06PO4质量的2.5%(碳最终质量分数为1.26%)时,所获得的碳包覆和Mn掺杂的LiFePO4正极材料的电化学性能最优异,其0.1C倍率的放电比容量为165.1 mA·h/g,10C倍率的放电比容量仍达92.4 mA·h/g,50次循环后容量保持率分别为96.7%及89.2%。
蔡锐王月芳邵宗平
关键词:锂电池LIFEPO4MN掺杂碳包覆
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