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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Evaluation of Scalable Porous Si-Rich Si/C Composites with Low Volume Expansion in Coin Cells to Prismatic Cell Formats
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Evaluation of Scalable Porous Si-Rich Si/C Composites with Low Volume Expansion in Coin Cells to Prismatic Cell Formats

机译:含硬币细胞低体积膨胀的可缩放多孔Si / C复合材料的评价

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Li-ion battery cells on the basis of Si-containing anodes suffer from their large volume expansion of up to 300%, impeding their extensive application in the automotive field. Herein, the synthesis of a Si-rich Si/C composite is introduced. The implemented porosity of the composite has a buffering effect on the Si volume changes during cycling. The scalability of the material from lab-scale to industrial-scale batch sizes as well as from coin cell (<5 mAh), to pouch cell (approximate to 0.75 Ah), and to prismatic (PHEV) cells (approximate to 26 Ah) is demonstrated. The performance of the pouch cells and PHEV cells is further improved by cycling under an external mechanical pressure. The irreversible swelling of the pouch and the PHEV cells stays below 6% during cycling. Reproducible aging and swelling behavior of different cell types is observed and investigated in detail. The low irreversible volume increase is confirmed by X-ray computer tomography (CT) measurements of the PHEV cells before and after cycling.
机译:锂离子电池电池基于含Si的阳极患有其大容量膨胀,高达300%,阻碍了它们在汽车领域的广泛应用。这里,引入了富含Si / C复合材料的合成。复合材料的实施孔隙率对循环期间的Si体积变化具有缓冲效果。从实验室标度到工业规模批量尺寸以及从硬币细胞(<5mAh),到袋细胞(近似为0.75°),以及棱镜(PHEV)细胞(近似为26°)被证明。通过在外部机械压力下循环进一步改善袋细胞和PHEV细胞的性能。囊和PHEV细胞的不可逆肿胀在循环期间保持在6%以下。观察和研究不同细胞类型的可重复的老化和溶胀行为。通过循环前后PHEV细胞的X射线计算机断层扫描(CT)测量来确认低不可逆体积增加。

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