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High Performance Li4Ti5O12/Si Composite Anodes for Li-Ion Batteries

机译:用于锂离子电池的高性能Li4Ti5O12 / Si复合阳极

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摘要

Improving the energy capacity of spinel Li4Ti5O12 (LTO) is very important to utilize it as a high-performance Li-ion battery (LIB) electrode. In this work, LTO/Si composites with different weight ratios were prepared and tested as anodes. The anodic and cathodic peaks from both LTO and silicon were apparent in the composites, indicating that each component was active upon Li+ insertion and extraction. The composites with higher Si contents (LTO:Si = 35:35) exhibited superior specific capacity (1004 mAh·g−1) at lower current densities (0.22 A·g−1) but the capacity deteriorated at higher current densities. On the other hand, the electrodes with moderate Si contents (LTO:Si = 50:20) were able to deliver stable capacity (100 mAh·g−1) with good cycling performance, even at a very high current density of 7 A·g−1. The improvement in specific capacity and rate performance was a direct result of the synergy between LTO and Si; the former can alleviate the stresses from volumetric changes in Si upon cycling, while Si can add to the capacity of the composite. Therefore, it has been demonstrated that the addition of Si and concentration optimization is an easy yet an effective way to produce high performance LTO-based electrodes for lithium-ion batteries.
机译:提高尖晶石Li4Ti5O12(LTO)的能量容量对于将其用作高性能锂离子电池(LIB)电极非常重要。在这项工作中,制备了具有不同重量比的LTO / Si复合材料并作为阳极进行了测试。 LTO和硅的阳极和阴极峰在复合材料中均很明显,表明每种组分在Li + 插入和萃取后均具有活性。 Si含量高(LTO:Si = 35:35)的复合材料在较低的电流密度(0.22 A·g -1 )下表现出优异的比容量(1004 mAh·g -1 )。 sup>),但是在更高的电流密度下容量会下降。另一方面,即使在非常高的硅含量下,中等硅含量(LTO:Si = 50:20)的电极也能够提供稳定的容量(100 mAh·g -1 )和良好的循环性能。高电流密度为7 A·g -1 。比容量和速率性能的提高是LTO和Si协同作用的直接结果;前者可以减轻循环中Si体积变化引起的应力,而Si可以增加复合材料的容量。因此,已经证明添加Si和优化浓度是生产用于锂离子电池的高性能基于LTO的电极的容易而有效的方式。

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