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Doping behavior of Br in Li4Ti5O12 anode materials and their electrochemical performance for Li-ion batteries

机译:Li4Ti5O12阳极材料中BR的掺杂行为及其对锂离子电池的电化学性能

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摘要

Br-doped Li4Ti5O12-xBrx ("x" = 0, 01, 0.3, 0.5 and 0.7) anode materials were synthesized by a conventional solid-state reaction technique using precursors of Li2CO3, TiO2 and LiBr, and the doping behavior and related electrochemical properties of these materials were studied. In our investigation, quantitative instrumental analyses revealed that most of the Br ions are situated on the surfaces/interfaces of agglomerated particles rather than in the bulk lattice. Narrow conduction paths of electron and Li-ion were, thus, formed on their surfaces/ interfaces. During charging/discharging process, the presence of these narrow surface electrical conduits increased the rate-capability of the LTOBr samples. The LTOBr0.5 sample showed the highest capacity of 125 mAh/g at 1C compared to 115 mAh/g for pure LTO. A highly Br-doped sample (LTOBr0.7), however, showed a slight reduction in capacity. This was explained with the formation of fine precipitations (Br-containing second phase) on the surfaces of the LTO particles due to high Br addition.
机译:通过使用Li 2 CO 3,TiO2和LEX的前体和掺杂行为和相关电化学性能,通过常规固态反应技术合成BR-DOPED LI4TI5O12-XBRX(“X”= 0,01,0.3,0.5和0.7)阳极材料,以及掺杂行为和相关电化学性质这些材料进行了研究。在我们的研究中,定量仪器分析显示,大多数BR离子位于附聚颗粒的表面/界面上而不是在散装晶格中。因此,电子和锂离子的窄导通路径在其表面/界面上形成。在充电/放电过程中,这些窄表面电导管的存在提高了LTOBR样品的速率能力。 LTOBR0.5样品在1℃下显示出125mAh / g的最高容量,而纯LTO为115mAh / g。然而,高度BR掺杂的样品(LTOBR0.7)表现出容量略微降低。通过在LTO颗粒的表面上形成细沉淀(含含Br的第二阶段)的细沉淀物(Br含第二阶段)来解释这一点。

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