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◆ Research2026-01-01· Anode

Functionalization of Fast-Charging Hard Carbon Anode for Ah-Level Li-Ion Pouch Batteries

Yongpeng Cui, Kai Yang, Zhijian Qiu, Rumeng Zheng, Xiang Li, Lingmei Wang, Yajun Wang, Yao Wang, Wen Li, Weiwei Pang, Yongfeng Li, Wei Xing

原始摘要(英文原文)· Original abstract
The development of fast-charging anode materials is crucial for overcoming the sluggish reaction kinetics of conventional graphite electrodes in lithium-ion batteries. This work presents a kilogram-scale producible hard carbon/graphene flake (HC-GF) composite anode engineered based on an “electron Velcro” conductive network design. In this architecture, highly conductive GFs are intimately integrated with the HC matrix, creating multidimensional electron/ion transport channels while effectively minimizing interfacial resistance. The resulting HC-GF anode exhibits exceptional electrochemical performance, delivering a reversible capacity of 506.4 mAh g −1 and maintaining 223.8 mAh g −1 at a 10 C rate (corresponding to 6-min fast charging). Remarkably, when blended with graphite at a 20% ratio in a 5 Ah LFP//graphite + 20% (HC-GF) pouch cell, this minimal doping level substantially enhances multiple performance metrics, particularly fast-charging capability and cycling stability. The pouch cell retains 3.39 Ah after 600 cycles at 3 C, corresponding to an impressive capacity retention of 94.6%. This study provides a valuable material strategy for advancing fast-charging lithium-ion battery technologies.
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Functionalization of Fast-Charging Hard Carbon Anode for Ah-Level Li-Ion Pouch Batteries — 科研速览 Science Skim