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首页> 外文期刊>Batteries >Effect of Porosity on the Thick Electrodes for High Energy Density Lithium Ion Batteries for Stationary Applications
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Effect of Porosity on the Thick Electrodes for High Energy Density Lithium Ion Batteries for Stationary Applications

机译:孔隙率对固定应用高能量密度锂离子电池厚电极的影响

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摘要

A series of 250–350 μ m-thick single-sided lithium ion cell graphite anodes and lithium nickel manganese cobalt oxide (NMC) cathodes with constant area weight, but varying porosity were prepared. Over this wide thickness range, micron-sized carbon fibers were used to stabilize the electrode structure and to improve electrode kinetics. By choosing the proper porosities for the anode and cathode, kinetic limitations and aging losses during cell cycling could be minimized and energy density improved. The cell (C38%-A48%) exhibits the highest energy density, 441 Wh/L at the C/10 rate, upon cycling at elevated temperature and different C-rates. The cell (C38%-A48%) showed 9% higher gravimetric energy density at C/10 in comparison to the cell with as-coated electrodes.
机译:制备了一系列250-350μm厚的单面锂离子电池石墨阳极和锂镍锰钴酸钴(NMC)阴极,这些阴极具有恒定的面积重量,但孔隙率不同。在此较宽的厚度范围内,使用微米级碳纤维来稳定电极结构并改善电极动力学。通过为阳极和阴极选择合适的孔隙率,可以将电池循环期间的动力学限制和老化损失降至最低,并提高能量密度。电池(C38%-A48%)在升高的温度和不同的C速率循环下表现出最高的能量密度,在C / 10速率下为441 Wh / L。与带有初涂电极的电池相比,电池(C38%-A48%)在C / 10处的重量能量密度高9%。

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