首页> 外文期刊>Journal of the American Chemical Society >Collapse of LiNi_(1-x-y)Co_xMn_yO_2 Lattice at Deep Charge Irrespective of Nickel Content in Lithium-Ion Batteries
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Collapse of LiNi_(1-x-y)Co_xMn_yO_2 Lattice at Deep Charge Irrespective of Nickel Content in Lithium-Ion Batteries

机译:LiNi_(1-x-y)Co_xMn_yO_2晶格在深度充电时的崩解,与锂离子电池中的镍含量无关

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Volume variation and the associated mechanical fracture of electrode materials upon Li extraction/insertion are a main cause limiting lifetime performance of lithium-ion batteries. For LiNi1-x-yCoxMnyO2 (NCM) cathodes, abrupt anisotropic collapse of the layered lattice structure at deep charge is generally considered characteristic to high Ni content and can be effectively suppressed by elemental substitution. Herein, we demonstrate the lattice collapse is a universal phenomenon almost entirely dependent on Li utilization, and not Ni content, of NCM cathodes upon delithiation. With Li removal nearing 80 mol %, very similar c-axis lattice shrinkage of around 5% occurs concurrently for NCMs synthesized in-house regardless of nickel content (90, 70, 50, or 33 mol %); meanwhile, the a-axis lattice contracts for high-Ni NCM, but it expands for low-Ni NCM. We further reveal Co-Mn cosubstitution in NCM barely, if at all, affects several key structural aspects governing the lattice distortion upon delithiation. Our results highlight the importance of evaluating true implications of compositional tuning on high-Ni layered oxide cathode materials to maximize their charge-storage capacities for next-generation high-energy Li-ion batteries.
机译:锂提取/插入时电极材料的体积变化和相关的机械断裂是限制锂离子电池寿命的主要原因。对于LiNi1-x-yCoxMnyO2(NCM)阴极,通常认为深电荷下层状晶格结构突然各向异性塌陷是高Ni含量的特征,可以通过元素取代有效地抑制。在本文中,我们证明晶格塌陷是普遍现象,在脱锂时几乎完全取决于NCM阴极的Li利用率而不是Ni含量。当Li的去除率接近80 mol%时,无论镍含量(90、70、50或33 mol%)如何,内部合成的NCM都同时发生非常相似的c轴晶格收缩,约为5%。同时,高Ni NCM的a轴晶格收缩,但低Ni NCM的a轴晶格扩展。我们进一步揭示了NCM中Co-Mn的共取代几乎没有,甚至根本没有影响控制脱锂时晶格畸变的几个关键结构方面。我们的结果强调了评估组成调整对高镍层氧化物阴极材料的真正意义的重要性,以最大程度地提高下一代高能锂离子电池的电荷存储容量。

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