材料科学
阴极
各向同性
耐久性
微观结构
离子
热稳定性
放松(心理学)
复合材料
化学物理
化学工程
化学
心理学
社会心理学
物理
有机化学
物理化学
量子力学
工程类
作者
Zhihong Wang,Wu Wei,Qiang Han,Huawei Zhu,Ling Chen,Yanjie Hu,Hao Jiang,Chunzhong Li
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-08-23
卷期号:17 (17): 17095-17104
被引量:28
标识
DOI:10.1021/acsnano.3c04773
摘要
Developing isotropic-dominated microstrain relaxation is a vital step toward the enhancement of cyclic performance and thermal stability for high-energy-density Ni-rich cathodes. Here, a microstructure engineering strategy is employed for synthesizing the elongated primary particles radially aligned Ni-rich cathodes only by regulating the precipitation rates of cations and the distributions of flow field. The as-obtained cathode also exhibits an enlarged lattice distance and highly exposed (003) plane. The high aspect ratio and favorable atomic arrangement of primary particles not only enable isotropic strain relaxation for effectively suppressing microcrack formation and propagation, but also facilitate Li-ion diffusion with greatly reduced Li/Ni mixing. Consequently, it shows obvious superiority in the high-rate, long-cycle life, and thermal stability compared with the conventional counterparts. After modification, an exceptionally long life is achieved with a capacity retention of 90.1% at 1C and 84.3% at 5C after 1500 cycles within 3.0-4.3 V in a 1.5-Ah pouch cell. This work offers a universal strategy to achieve isotropic strain distribution for conveniently enhancing the durability of Ni-rich cathodes.
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