布基纸
材料科学
阴极
复合材料
烧结
电化学
阳极
碳纳米管
化学工程
极限抗拉强度
电池(电)
放电等离子烧结
退火(玻璃)
电解质
锂离子电池
储能
多孔性
锂电池
柔性电子器件
纳米技术
锂(药物)
数码产品
碳纤维
爆炸物
分离器(采油)
球磨机
充电周期
作者
Yanzhi Cai,Mingxing Chen,Long Cheng,Hongfeng Yin,Siyu Guo,Yibing Yuan,Shaoxiong Ren,Zixuan Yu,Yalong Chai,Xue Huang
出处
期刊:Small
[Wiley]
日期:2026-01-05
卷期号:: e05556-e05556
标识
DOI:10.1002/smll.202505556
摘要
Single-crystalline ultra-fine sized LiNixCoyAl1-x-yO2 (NCA) features stable Al─O bonds and crack-resistantance due to no grain boundaries, exhibiting excellent long charge-discharge cycle stability as a lithium-ion battery cathode. With flexible electronics growing, flexible energy storage materials are urgently needed. However, preparing single-crystalline ultra-fine NCA particles and assembling them into a self-supported superflexible cathode is still a tough challenge. Here, submicron-sized Ni-rich LiNi0.89Co0.09Al0.02O2 single-crystals were made via a molten-salt-assisted high-temperature solid-phase method with lithium added during annealing. Then, they were combined with carbon nanotubes by directional pressure filtration to form a superflexible porous hybrid buckypaper (BP). Under O2, sintering at 750°C for 15 h with 1.03 Li addition and annealing with a Li source at 750°C for 5 h gave the optimal submicron-sized NCA single crystals. The BP could curl around a 2 mm-radius rod, bend 180°, knot without damage, and had 9.59 MPa tensile strength. In a lithium-ion battery, at 1C, its initial and 200-cycle capacities were respectively 192.27 and 179.3 mAh/g (93.2% retention); at 5C, respectively 135.4 and 132.9 mAh/g (98% retention). This work offers a new idea for self-supported flexible cathode construction.
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