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Synergistic effects of coating and doping for lithium ion battery cathode materials: synthesis and characterization of lithium titanate-coated LiCoO2 with Mg doping

机译:锂离子电池正极材料的涂覆和掺杂的协同效应:掺杂镁的钛酸锂包覆的LiCoO2的合成与表征

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摘要

Lithium titanates are introduced as coating materials on the surface of Mg-doped LiCoO2 in which the residual Li2CO3 after synthesis of the active materials is used as a lithium source. It is revealed that two completely different lithium titanate phases (monoclinic Li2TiO3 and spinel Li4Ti5O12) can be obtained as the coating materials depending on the concentration of a titanium source. Characterization of the coating materials is performed with various experimental techniques including XRD, nano SIMS, TEM, EELS and current measurement using nano probe. The Li4Ti5O12 coating layer from the high concentration of titanium source secures better electrochemical performances than the Li2TiO3 one from the low concentration of titanium source due to its "zero-strain" characteristic. In addition, it is shown that the doped ions (Mg2+) from the active materials move to the coating layer and strongly enhance the conductivity of Li4Ti5O12. Consequently, synergistic effects on the cell performances of cyclability and rate capability from coating and doping for the LiCoO2 cathode materials are rigorously investigated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将钛酸锂作为涂层材料引入掺Mg的LiCoO 2的表面,其中活性材料合成后的残留Li 2 CO 3被用作锂源。据揭示,取决于钛源的浓度,可以获得两种完全不同的钛酸锂相(单斜晶Li 2 TiO 3和尖晶石Li 4 Ti 5 O 12)作为涂层材料。涂层材料的表征使用各种实验技术进行,包括XRD,纳米SIMS,TEM,EELS和使用纳米探针的电流测量。高浓度钛源的Li4Ti5O12涂层比低浓度钛源的Li2TiO3具有更好的电化学性能,这归因于其“零应变”特性。另外,显示出来自活性材料的掺杂离子(Mg 2+)移动至涂层并强烈地增强了Li 4 Ti 5 O 12的电导率。因此,严格研究了涂覆和掺杂LiCoO2正极材料对电池循环性能和倍率性能的协同效应。 (C)2015 Elsevier Ltd.保留所有权利。

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