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首页> 外文期刊>Advanced energy materials >High-Capacity Concentration Gradient Li[Ni_(0.865)Co_(0.120)Al_(0.015)] O_2 Cathode for Lithium-Ion Batteries
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High-Capacity Concentration Gradient Li[Ni_(0.865)Co_(0.120)Al_(0.015)] O_2 Cathode for Lithium-Ion Batteries

机译:锂离子电池大容量浓度梯度Li [Ni_(0.865)Co_(0.120)Al_(0.015)] O_2阴极

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A Ni-rich concentration-gradient Li[Ni0.865Co0.120Al0.015]O-2 (NCA) cathode is prepared with a Ni-rich core to maximize the discharge capacity and a Co-rich particle surface to provide structural and chemical stability. Compared to the conventional NCA cathode with a uniform composition, the gradient NCA cathode exhibits improved capacity retention and better thermal stability. Even more remarkably, the gradient NCA cathode maintains 90% of its initial capacity after 100 cycles when cycled at 60 degrees C, whereas the conventional cathode exhibits poor capacity retention and suffers severe structural deterioration. The superior cycling stability of the gradient NCA cathode largely stemmed from the gradient structure combines with the Co-rich surface, which provides chemical stability against electrolyte attack and reduces the inherent internal strain observed in all Ni-rich layered cathodes in their charged state, thus providing structural stability against the repeated anisotropic volume changes during cycling. The high discharge capacity of the proposed gradient NCA cathode extends the driving range of electric vehicles and reduces battery costs. Furthermore, its excellent capacity retention guarantees a long battery life. Therefore, gradient NCA cathodes represent one of the best classes of cathode materials for electric vehicle applications that should satisfy the demands of future electric vehicles.
机译:制备具有富镍浓度梯度的Li [Ni0.865Co0.120Al0.015] O-2(NCA)阴极,该阴极具有富镍芯,可最大程度地提高放电容量,富钴颗粒表面可提供结构和化学稳定性。与具有均匀组成的常规NCA阴极相比,梯度NCA阴极具有更高的容量保持率和更好的热稳定性。更为显着的是,梯度NCA阴极在60摄氏度下循环100个循环后,仍能保持其初始容量的90%,而常规阴极的容量保持能力却很差,并且结构严重受损。梯度NCA阴极的优异循环稳定性主要源于梯度结构与富钴表面的结合,从而提供了对电解质侵​​蚀的化学稳定性,并降低了所有富镍层状阴极在其带电状态下观察到的固有内部应变,因此提供结构稳定性,以抵抗循环过程中反复出现的各向异性体积变化。提出的梯度NCA阴极的高放电容量扩展了电动汽车的行驶范围并降低了电池成本。此外,其出色的容量保持能力可确保较长的电池寿命。因此,梯度NCA阴极代表了应满足未来电动汽车需求的电动汽车应用中最好的阴极材料类别之一。

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