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首页> 外文期刊>Nanotechnology >Hierarchical C/SiOx/TiO2 ultrathin nanobelts as anode materials for advanced lithium ion batteries
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Hierarchical C/SiOx/TiO2 ultrathin nanobelts as anode materials for advanced lithium ion batteries

机译:用于先进锂离子电池的阳极材料的分层C / SiOx / TiO2超高纳米电池

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摘要

TiO2-based nanomaterials are demonstrated to be a promising candidate for next generation lithium ion batteries due to their stable performance and easy preparation. However, their inherent low capacity impedes their wide application compared to commercial carbon nanomaterials. Here we present a unique in situ grafting-graphitization method to achieve a ternary nanocomposite of C/SiOx/TiO2 ultrathin nanobelts with a core-shell heterostructure. The obtained ternary nanocomposite integrates the merits of high specific capacity of SiOx, the excellent mechanical stability of graphite-like carbon and the high reactivity of TiO2. Cyclic voltammetric curves and cycling performance manifest the optimal ternary nanocomposite and deliver a very high initial specific capacity of similar to 1196 mA h g(-1) with both good rate capability (similar to 200 mA h g(-1) up to 10 C) and especially enhanced cycle stability. Our work demonstrates that building hierarchical core-shell heterostructures is an effective strategy to improve capacity and cycling performance in other composite anodes for electrochemical energy storage materials.
机译:基于TiO2的纳米材料被证明是由于其稳定的性能和易于制备,成为下一代锂离子电池的有希望的候选者。然而,与商业碳纳米材料相比,它们固有的低容量阻碍了它们的广泛应用。在这里,我们展示了一种独特的原位接枝 - 石墨化方法,以实现具有核壳异质结构的C / SiOx / TiO2超细胞瘤的三元纳米复合材料。所得三元纳米复合材料整合了SiOx的高比能力的优点,石墨碳的优异机械稳定性和TiO 2的高反应性。循环伏安曲线和循环性能表现出最佳的三元纳米复合材料,并提供与1196 mA Hg(-1)相似的非常高的初始特异性能力,并且具有良好的速率能力(类似于200 mA Hg(-1)至10 c)和特别是增强的循环稳定性。我们的作品表明,建筑等级核心壳异质结构是一种有效的策略,可以提高电化学能量储存材料的其他复合阳极中的容量和循环性能。

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