首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Promoting long-term cycling performance of high-voltage Li2CoPO4F by the stabilization of electrode/electrolyte interface
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Promoting long-term cycling performance of high-voltage Li2CoPO4F by the stabilization of electrode/electrolyte interface

机译:通过稳定电极/电解质界面促进高压Li2CoPO4F的长期循环性能

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摘要

High-voltage Li2CoPO4F (~5 V vs. Li/Li~+) with double-layer surface coating has been successfully prepared for the first time. The Li3PO4-coated Li2CoPO4F shows a high reversible capacity of 154 mA h g~(-1) (energy density up to 700 W h kg~(-1)) at 1C current rate, and excellent rate capability (141 mA h g~(-1) at 20 C). XRD and MAS NMR results show that Li2CoPO4F can be indexed as an orthorhombic structure with space group Pntna and coexists with Li3PO4. The XPS depth profiles and TEM analysis reveal that the as-prepared material has a double-layer surface coating, with a carbon outer layer and a Li3PO4 inner layer, which greatly enhances the transfer kinetics of the lithium ions and electrons in the material and stabilizes the electrode/electrolyte interface. Using LiBOB as an electrolyte additive is another way to further stabilize the electrode/electrolyte interface, and the LiBOB has a synergistic effect with the Li3PO4 coating layer. In this way, the Li2CoPO4F cathode material exhibits excellent long-term cycling stability, with 83.8% capacity retention after 150 cycles. The excellent cycling performance is attributed to the LiBOB electrolyte additive and the Li3PO4 coating layer, both of which play an important role in stabilizing the charge transfer resistance of Li2CoPO4F upon cycling.
机译:首次成功制备了具有双层表面涂层的高压Li2CoPO4F(相对于Li / Li〜+约为5 V)。 Li3PO4涂层的Li2CoPO4F在1C电流速率下显示出154 mA hg〜(-1)的高可逆容量(能量密度高达700 W h kg〜(-1)),并且具有出色的速率容量(141 mA hg〜(- 1)在20 C)。 XRD和MAS NMR结果表明,Li2CoPO4F可以与Pntna空间群正交排列,并与Li3PO4共存。 XPS深度剖面和TEM分析表明,所制备的材料具有双层表面涂层,具有碳外层和Li3PO4内层,这大大增强了材料中锂离子和电子的传递动力学并使其稳定电极/电解质界面。使用LiBOB作为电解质添加剂是进一步稳定电极/电解质界面的另一种方法,并且LiBOB与Li3PO4涂层具有协同作用。以此方式,Li 2 CoPO 4 F正极材料表现出优异的长期循环稳定性,在150次循环后具有83.8%的容量保持率。优异的循环性能归因于LiBOB电解质添加剂和Li3PO4涂层,二者在稳定循环时Li2CoPO4F的电荷转移阻力方面起着重要作用。

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