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首页> 外文期刊>Advanced materials interfaces >Operando Observations and First-Principles Calculations of Reduced Lithium Insertion in Au-Coated LiMn_2O_4
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Operando Observations and First-Principles Calculations of Reduced Lithium Insertion in Au-Coated LiMn_2O_4

机译:Ou涂层Limn_2O_4中,Oucando观察和第一原理计算降低锂插入的计算

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The deposition of protective coatings on the spinel LiMn_2O_4 (LMO) lithiumion battery cathode is effective in reducing Mn dissolution from the electrode surface. Although protective coatings positively affect LMO cycle life, much remains to be understood regarding the interface formed between these coatings and LMO. Using operando powder X-ray diffraction with Rietveld refinement, it is shown that, in comparison to bare LMO, the lattice parameter of a model Au-coated LMO cathode is significantly reduced upon relithiation. Less charge passes through Au-coated LMO in comparison to bare LMO, suggesting that the reduced lattice parameter is associated with decreased Li~+ solubility in the Au-coated LMO. Density functional theory calculations show that a more Li~+-deficient near-surface is thermodynamically favorable in the presence of the Au coating, which may further stabilize these cathodes through suppressing formation of the Jahn-Teller distorted Li_2Mn_2O_4 phase at the surface. Electronic structure and chemical bonding analyses show enhanced hybridization between Au and LMO for delithiated surfaces leading to partial oxidation of Au upon delithiation. This study suggests that, in addition to transition metal dissolution from electrode surfaces, protective coating design must also balance potential energy effects induced by charge transfer at the electrode-coating interface.
机译:在尖晶石LIMN_2O_4(LMO)锂电池阴极上的保护涂层的沉积是有效地从电极表面降低MN溶解。虽然保护涂层积极地影响LMO循环寿命,但是关于在这些涂层和LMO之间形成的界面有很大的待地理解。使用具有RIETVELD改进的操作常见的粉末X射线衍射,示出了与裸LMO相比,模型Au涂覆的LMO阴极的晶格参数在遥控上显着降低。与裸LMO相比,较少的电荷通过Au涂覆的LMO,表明降低的晶格参数与Au涂覆的LMO中的Li〜+溶解度降低相关。密度函数理论计算表明,在Au涂层的存在下,更加Li + - 近近表面热力学上有利,这可以通过抑制表面在表面处的jAhn-kill扭曲的Li_2mN_2O_4相的形成进一步稳定这些阴极。电子结构和化学键合分析显示出在脱发表面的Au和LMO之间的增强杂交,其导致在脱节性上是部分氧化Au的。本研究表明,除了从电极表面的过渡金属溶解之外,保护涂层设计还必须在电极涂覆界面处通过电荷转移诱导的潜在能量效应平衡。

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