Structured electrode additive manufacturing for lithium-ion batteries

Authors: Soyeon Park (Kelvin), Kaiyue Deng (Kelvin), Baohui Shi (Kelvin), Yuanyuan Shang (Kelvin), Kun (Kelvin), Fu

arXiv: 2109.04520v1 - DOI (cond-mat.mtrl-sci)

Abstract: A thick electrode with high areal capacity has been developed as a strategy for high-energy-density lithium-ion batteries, but thick electrodes have difficulties in manufacturing and limitations in ion transport. Here, we reported a new manufacturing approach for ultra-thick electrode with aligned structure, called structure electrode additive manufacturing or SEAM, which aligns active materials to the through-thicknesses direction of electrodes using shear flow and a designed printing path. The ultra-thick electrodes with high loading of active materials, low tortuous structure, and good structure stability resulting from a simple and scalable SEAM lead to rapid ion transport and fast electrolyte infusion, delivering a higher areal capacity than slurry-casted thick electrodes. SEAM shows strengths in design flexibility and scalability, which allows the production of practical high energy/power density structure electrodes.

Submitted to arXiv on 09 Sep. 2021

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