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首页> 外文期刊>Electrochimica Acta >Synthesis of NaV6O15 nanorods via thermal oxidation of sodium-intercalated 2D V2CTx and their electrochemical properties as anode for lithium-ion batteries
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Synthesis of NaV6O15 nanorods via thermal oxidation of sodium-intercalated 2D V2CTx and their electrochemical properties as anode for lithium-ion batteries

机译:锂离子电池的阳极热氧化通过热氧化钠晶体氧化的Nav6O15纳米棒及其电化学性能

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Herein, a ternary vanadium bronze compound, NaV6O15 was synthesized via a low temperature thermal oxidization of sodium-intercalated V2CTx, which exhibited a higher specific capacity than the precursor V2CTx when used as the anode material for lithium-ion batteries (LIBs). The characterization results showed that the NaV6O15 nanorods spontaneously grew in the interlayers and directly damaged the layered structure of MXene. Moreover, the charge-discharge result demonstrated an initial specific discharge capacity of 350 mAh g(-1) under a current density of 50 mA g(-1) was achieved and, in particular, a specific capacity of 120 mAh g(-1) and a Coulombic efficiency of 100% were maintained after as many as 200 cycles at 1000 mA g(-1) without the lattice expansion and deformation of NaV6O15 during the lithiumion insertion/de-insertion process. According to these results, it is therefore expected that optimizing the process further to oxidize other metal cations intercalated-MXene will exploit other nanostructures employed as the electrode in LIBs and demonstrate immeasurable performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这里,通过低温热氧化的钠嵌入V2CTX合成三元钒青铜化合物,其在用作锂离子电池(Libs)的阳极材料时表现出比前体V2CTX更高的比容量。表征结果表明,NAV6015纳米棒在中间层中自发地增长并直接损坏了MXENE的层状结构。此外,在达到50mAg(-1)的电流密度下,电荷 - 放电结果显示出350mAhg(-1)的初始特异性放电容量,特别是120mAhg的特定容量(-1 )在1000mA g(-1)的情况下,在1000mA g(-1)下保持100%的库仑效率,在锂锂插入/去插入过程中,在没有晶片膨胀和Nav6O15的晶格膨胀和变形的情况下保持。根据这些结果,预期进一步优化氧化其他金属阳离子嵌入-MENE的方法将利用作为LIBS中的电极的其他纳米结构,并证明不可估量的性能。 (c)2017 Elsevier Ltd.保留所有权利。

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