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首页> 外文期刊>Electrochimica Acta >Layered Li-rich vanadium phosphate Li9V3(P2O7)(3)(PO4)(2): cathode and anode materials for lithium-ion batteries
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Layered Li-rich vanadium phosphate Li9V3(P2O7)(3)(PO4)(2): cathode and anode materials for lithium-ion batteries

机译:层状富锂磷酸钒Li9V3(P2O7)(3)(PO4)(2):锂离子电池的正极和负极材料

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In this paper, we have prepared the carbon-coated Li9V3(P2O7)(3)(PO4)(2) (LVPP/C) composite via a simple carbon thermal reduction and its lithium inserted-extracted mechanism are systematically investigated. LVPP/C cathode can keep a reversible capacity of 100.6 mAhg(-1), 98.7% of the initial discharge capacity, after 50 cycles within 2.5 V-4.6 V, while an obviously capacity-fading is observed within 2.5 V-4.8 V. Meanwhile, the LVPP/C anode delivers a well rate capability and, a reversible capacity of 94.5 mAhg(-1) (1.0-2.5 V) can still be retained after 60 cycles, ranging from 0.1C to 2C and finally in 0.1C succession. A good preservation of the LVPP structure is observed during the discharge-charge process by in-situ XRD and an intercalation reaction mechanism is also confirmed for LVPP/C anode here for the first time. At last, a novel symmetrical full battery by using LVPP/C as both cathode and anode simultaneously has been successfully assembled. The investigation shows that this symmetrical cell, with an average voltage of 2.5 V, can deliver a reversible capacity of 59.8 mAhg(-1) after 30 cycles at 0.1C. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过简单的碳热还原制备了碳包覆的Li9V3(P2O7)(3)(PO4)(2)(LVPP / C)复合材料,并系统地研究了其嵌锂萃取机理。 LVPP / C阴极在2.5 V-4.6 V范围内经过50次循环后,可保持100.6 mAhg(-1)的可逆容量,为初始放电容量的98.7%,而在2.5 V-4.8 V范围内则观察到明显的容量衰减。同时,LVPP / C阳极具有良好的速率能力,在从0.1C到2C,最后以0.1C连续60个循环后,仍可保持94.5 mAhg(-1)(1.0-2.5 V)的可逆容量。 。在放电过程中通过原位XRD观察到LVPP结构的良好保存,并且这里首次证实了LVPP / C阳极的插层反应机理。最后,成功地组装了同时使用LVPP / C作为正极和负极的新型对称全电池。研究表明,这种对称电池的平均电压为2.5 V,在0.1C下经过30次循环后可提供59.8 mAhg(-1)的可逆容量。 (C)2016 Elsevier Ltd.保留所有权利。

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