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GeTe-TiC-C Composite Anodes for Li-Ion Storage

机译:用于锂离子储存的GetE-TiC-C复合阳极

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摘要

Germanium boasts a high charge capacity, but it has detrimental effects on battery cycling life, owing to the significant volume expansion that it incurs after repeated recharging. Therefore, the fabrication of Ge composites including other elements is essential to overcome this hurdle. Herein, highly conductive Te is employed to prepare an alloy of germanium telluride (GeTe) with the addition of a highly conductive matrix comprising titanium carbide (TiC) and carbon (C) via high-energy ball milling (HEBM). The final alloy composite, GeTe-TiC-C, is used as a potential anode for lithium-ion cells. The GeTe-TiC-C composites having different combinations of TiC are characterized by electron microscopies and X-ray powder diffraction for structural and morphological analyses, which indicate that GeTe and TiC are evenly spread out in the carbon matrix. The GeTe electrode exhibits an unstable cycling life; however, the addition of higher amounts of TiC in GeTe offers much better electrochemical performance. Specifically, the GeTe-TiC (20%)-C and GeTe-TiC (30%)-C electrodes exhibited excellent reversible cyclability equivalent to 847 and 614 mAh g−1 after 400 cycles, respectively. Moreover, at 10 A g−1, stable capacity retentions of 78% for GeTe-TiC (20%)-C and 82% for GeTe-TiC (30%)-C were demonstrated. This proves that the developed GeTe-TiC-C anodes are promising for potential applications as anode candidates for high-performance lithium-ion batteries.
机译:锗拥有高充电容量,但由于在重复再充电后它发生的显着膨胀,它对电池循环寿命具有不利影响。因此,GE复合材料的制造包括其他元件对于克服这种障碍是必不可少的。在此,采用高导电TE以通过高能球磨(HEBM)加入包含碳化钛(TIC)和碳(C)的高导电基质的碲化钠(GetE)的合金。最终合金复合材料GetE-TiC-C作为锂离子电池的潜在阳极。具有不同TIC组合的GetE-TiC-C复合材料的特征在于电子显微镜和X射线粉末衍射,用于结构和形态学分析,表明Gete和Tic在碳基质中均匀地展开。 Gete电极具有不稳定的循环寿命;然而,Gete中增加了更高量的TIC提供了更好的电化学性能。具体地,Gete-TiC(20%) - C和Gete-TiC(30%) - C电极分别在400次循环后,分别显示出相当于847和614mAhg-1的优异的可逆性可逆性。此外,在10A的G-1,对Gete-TiC(20%) - C的稳定容量保持率为78%,对于Gete-Tic(30%) - C进行82%。这证明了发达的Gete-Tic-C阳极对高性能锂离子电池的阳极候选潜在应用是有前途的。

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