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磷铁制备复合材料LiFePO_4/C的新方法研究 被引量:1
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作者 邱书伟 《化工新型材料》 CAS CSCD 北大核心 2012年第8期116-118,共3页
以磷铁为原料,采用两步烧结的碳热还原法成功合成了LiFePO4材料并研究了不同时间对烧结产物的影响,该方法可以实现原料的循环利用,对环境零排放。采用XRD,恒电流充放电法,交流阻抗对样品晶型和电化学性能进行表征和研究。烧结15h的样品... 以磷铁为原料,采用两步烧结的碳热还原法成功合成了LiFePO4材料并研究了不同时间对烧结产物的影响,该方法可以实现原料的循环利用,对环境零排放。采用XRD,恒电流充放电法,交流阻抗对样品晶型和电化学性能进行表征和研究。烧结15h的样品具有最接近标准卡片的晶型,在0.05C时的放电容量也最大可以达到162.3mAh/g。在0.5C循环15次后放电容量仍有124.6mAh/g,衰减仅为2.02%,具有良好的循环性。对比4个样品,15h烧结的样品也就有最小的反应阻抗仅为56Ω。 展开更多
关键词 磷铁 lifepo4材料 eis 放电容量
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Effect of Fe_2P in LiFePO_4/Fe_2P composite on electrochemical properties synthesized by MA and control of heat condition 被引量:4
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作者 PARK Jong Suk LEE Kyung Tae LEE Kyung Sub 《Rare Metals》 SCIE EI CAS CSCD 2006年第z2期179-183,共5页
In order to control the size and distribution of the high conductive Fe2P in LiFePO4/Fe2P composite, two different cooling rates (Fast: 15 ℃·min-1, Slow: 2 ℃·min-1) were employed after mechanical alloying.... In order to control the size and distribution of the high conductive Fe2P in LiFePO4/Fe2P composite, two different cooling rates (Fast: 15 ℃·min-1, Slow: 2 ℃·min-1) were employed after mechanical alloying. The discharge capacity of the fast cooled was 83 mAh·g-1 and the slow cooled 121 mAh·g-1. The particle size of the synthesized powder was examined by transmission electron microscopy and distribution of Fe2P was characterized using scanning electron microscopy (SEM). In addition, two-step heat treatment was carried out for better distribution of Fe2P. X-ray diffraction (XRD) and Rietveld refinement reveal that LiFePO4/Fe2P composite consists of 95.77% LiFePO4 and 4.33% of Fe2P. 展开更多
关键词 lifepo4/Fe2P composite mechanical alloying heat treatment discharge capacity
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Physical and Electrochemical Properties of Doped LiFePO4 as Cathode Material for Lithium-Ion Batteries 被引量:1
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作者 Yao Yongxun Duan Zhenzhong Li Yuenan Gu Hongwei Hua Zhiqiang Luan Wenzhou Wang Yuan 《Journal of Rare Earths》 SCIE EI CAS CSCD 2004年第z2期123-125,共3页
LiFePO4 cathode material was synthesized by a solid-state reaction using doping several elements (Nb5 + ,Zr4 + ). The starting materials were mixed with a high-efficient sander and treated thermally under flowing N2. ... LiFePO4 cathode material was synthesized by a solid-state reaction using doping several elements (Nb5 + ,Zr4 + ). The starting materials were mixed with a high-efficient sander and treated thermally under flowing N2. The samples were characterized by X-ray diffraction (XRD), field-emission gun electron microscopy (FEG), and their electrochemical performance was investigated in the term of cycling behavior. Room temperature discharge capacity about 140.6 mA·h·g-1 was obtained at C/5 rate. 展开更多
关键词 LITHIUM-ION batteries lifepo4 CATHODE material discharge capacity
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