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Electrochemical surface passivation of LiCoO 2 particles at ultrahigh voltage and its applications in lithium-based batteries

机译:LiCoO 2颗粒在超高压下的电化学表面钝化及其在锂基电池中的应用

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Lithium cobalt oxide, as a popular cathode in portable devices, delivers only half of its theoretical capacity in commercial lithium-ion batteries. When increasing the cut-off voltage to release more capacity, solubilization of cobalt in the electrolyte and structural disorders of lithium cobalt oxide particles are severe, leading to rapid capacity fading and limited cycle life. Here, we show a class of ternary lithium, aluminum, fluorine-modified lithium cobalt oxide with a stable and conductive layer using a facile and scalable hydrothermal-assisted, hybrid surface treatment. Such surface treatment hinders direct contact between liquid electrolytes and lithium cobalt oxide particles, which reduces the loss of active cobalt. It also forms a thin doping layer that consists of a lithium-aluminum-cobalt-oxide-fluorine solid solution, which suppresses the phase transition of lithium cobalt oxide when operated at voltages 4.55?V.
机译:钴酸锂作为便携式设备中的常用阴极,在商用锂离子电池中仅提供其理论容量的一半。当增加截止电压以释放更多的容量时,电解质中钴的增溶和锂钴氧化锂颗粒的结构紊乱非常严重,导致容量快速下降和有限的循环寿命。在这里,我们展示了一类三元锂,铝,氟改性的锂钴氧化物,使用一种方便且可扩展的水热辅助混合表面处理,具有稳定且导电的层。这种表面处理阻碍了液体电解质与钴酸锂颗粒之间的直接接触,从而减少了活性钴的损失。它还形成了由锂-铝-钴-氧化物-氟固溶体组成的薄掺杂层,当在> 4.55?V的电压下工作时,它抑制了钴酸锂的相变。

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