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Hierarchical donut-shaped LiMn2O4 as an advanced cathode material for lithium-ion batteries with excellent rate capability and long cycle life

机译:环形甜甜圈状LiMn2O4作为锂离子电池的高级正极材料,具有出色的倍率性能和长循环寿命

摘要

Porous micrometer-sized architecture that consists of aggregated single-crystalline nanoparticles is critical for LiMn2O4 to achieve good rate capacity and cycling stability, since it can increase the contact area between the electrolyte/electrode and shorten the transport paths for electrons and lithium ions. In this paper, hierarchical porous donut-shaped LiMn2O4 comprising aggregated single-crystalline nanoparticles has been successfully fabricated with MnO2 nanosheet coated polystyrene spheres as a precursor and characterized in terms of structure and performance as the cathode for lithium ion batteries. The charge/discharge tests show that the as-obtained donut-shaped LiMn2O4 exhibits excellent rate capability and high-rate cyclic stability. Surprisingly, even at a high charge/discharge rate of 10 C, the battery yields a capacity retention of over 95% after 500 cycles. The superior performance of the synthesized product can be attributed to its intrinsic structure: porous donut-shaped LiMn2O4 consisting of well-connected single-crystalline nanoparticles. The interpenetrating nanoparticle reduces the path of Li ion diffusion and increases the number of reaction sites for lithium insertion/extraction; the pores provide void space to buffer the volume changes during high-rate charge/discharge.
机译:由聚集的单晶纳米粒子组成的微米级多孔结构对于LiMn2O4获得良好的倍率容量和循环稳定性至关重要,因为它可以增加电解质/电极之间的接触面积并缩短电子和锂离子的传输路径。在本文中,以MnO2纳米片包覆的聚苯乙烯球为前体,成功地制备了包含聚集的单晶纳米粒子的分层多孔甜甜圈状LiMn2O4,并在结构和性能上表征了锂离子电池的阴极。充电/放电测试表明,所获得的甜甜圈形LiMn2O4具有出色的倍率性能和高倍率循环稳定性。令人惊讶的是,即使在10 C的高充电/放电速率下,该电池在500次循环后仍可保持95%以上的容量。合成产品的卓越性能可归因于其固有结构:由良好连接的单晶纳米颗粒组成的多孔甜甜圈状LiMn2O4。互穿的纳米粒子减少了锂离子的扩散路径,并增加了锂插入/抽出的反应位点数量。孔提供了空隙空间以缓冲高速率充电/放电期间的体积变化。

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