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首页> 外文期刊>Journal of power sources >Comparison of the surface changes on cathode during long term storage testing of high energy density cylindrical lithium-ion cells
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Comparison of the surface changes on cathode during long term storage testing of high energy density cylindrical lithium-ion cells

机译:高能量密度圆柱形锂离子电池长期存储测试期间阴极表面变化的比较

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Nickel-based oxide cathode material taking out from lithium-ion cell after storage for 2 years at 45 C is analyzed by electron energy-loss spectroscopy in a scanning transmission electron microscope (STEM-EELS) and the result of STEM-EELS is compared with cobalt-based oxide cathode material which is treated as same manor as nickel-based oxide cathode material. The Ni-L2,3 energy-loss near-edge structure (ELNES) spectra of nickel-based oxide cathode material show peak positions similar to original material before storage. This result indicates that nickel-based oxide material has no significant change in the surface structure. On the other hand, a remarkable shift to low energy is observed in the C0-L2.3 ELNES spectra of the cobalt-based oxide cathode material after storage. The cycle test at 60 C under the conditions of aggressive driving cycle (US06) mode for the nickel-based oxide cathode/graphite cell is also carried out. It is clear that cycle performance of the nickel-based oxide cathode/graphite cell is dependent on the depth of discharge (DOD).
机译:在45℃下保存2年后从锂离子电池中取出的镍基氧化物阴极材料在扫描透射电子显微镜(STEM-EELS)中通过电子能量损失谱进行分析,并将STEM-EELS的结果与钴基氧化物阴极材料,其处理方式与镍基氧化物阴极材料相同。镍基氧化物阴极材料的Ni-L2,3能量损失近边缘结构(ELNES)光谱显示出类似于原始材料在存储之前的峰值位置。该结果表明镍基氧化物材料的表面结构没有明显变化。另一方面,在储存后,钴基氧化物阴极材料的C0-L2.3 ELNES光谱中观察到了向低能量的显着转变。还对镍基氧化物阴极/石墨电池在激进驱动循环(US06)模式下在60°C下进行了循环测试。显然,镍基氧化物阴极/石墨电池的循环性能取决于放电深度(DOD)。

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