阳极
材料科学
电极
粒子(生态学)
电池(电)
石墨
纳米技术
碳纤维
可扩展性
自组装
纳米颗粒
光电子学
阴极
粒径
化学工程
复合材料
复合数
作者
Zhiyong Wang,Yun Zhao,Jiyi Zhu,Xinyang Yue,Bo Lan,Zhenyu Guo,Maria‐Magdalena Titirici,Hu Xu,Honggang Yu,Haizu Jin,Zheng Liang
摘要
ABSTRACT Particle packing in battery electrodes is pivotal to the fast‐charging performance of lithium‐ion batteries (LIBs). However, precise control of particle packing structure remains a major challenge in electrode fabrication, primarily owing to the absence of robust interfacial bonding between micron‐scale particles. Herein, we propose a novel layer‐by‐layer single‐layer particle assembly technique to fabricate electrodes with well‐defined particle packing structures. Using this approach, we prepared a 12‐meter‐long graphite (Gr)/hard carbon (HC) hybrid anode featuring a body‐centered cubic (BCC)‐like structure, which maximizes intimate Gr/HC contact interfaces and facilitates solid‐state Li + transport. Coupled with LiFePO 4 (LFP) cathodes, the as‐fabricated anode exhibits a high‐capacity retention of 80.7% after 1650 cycles at 4C. From an electrode design standpoint, this controllable particle‐packing strategy paves the way for a universal framework for developing sustainable, long‐cycling, and fast‐charging electrodes, potentially applicable to many types of battery anodes and cathodes.
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