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High-performance spinel-rich Li1.5MnTiO4+δ ultralong nanofibers as cathode materials for Li-ion batteries

机译:高性能尖晶石型Li1.5MnTiO4 +δ超长纳米纤维作为锂离子电池的正极材料

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摘要

Recently, composite materials based on Li-Mn-Ti-O system were developed to target low cost and environmentally benign cathodes for Li-ion batteries. The spinel-layered Li1.5MnTiO4+δ bulk particles showed excellent cycle stability but poor rate performance. To address this drawback, ultralong nanofibers of a Li1.5MnTiO4+δ spinel-layered heterostructure were synthesized by electrospinning. Uniform nanofibers with diameters of about 80 nm were formed of tiny octahedral particles wrapped together into 30 μm long fibers. The Li1.5MnTiO4+δ nanofibers exhibited an improved rate capability compared to both Li1.5MnTiO4+δ nanoparticles and bulk particles. The uniform one-dimensional nanostructure of the composite cathode exhibited enhanced capacities of 235 and 170 mAh g−1 at C/5 and 1 C rates, respectively. Its unique structure provided a large effective contact area for Li+ diffusion, and low charge transfer resistance. Moreover, the layered phase contributed to its capacity in over 3 V region, which increased specific energy (726 Wh kg−1) compared to the bulk particles (534 Wh kg−1).
机译:最近,开发了基于Li-Mn-Ti-O系统的复合材料,以低成本和环保的锂离子电池阴极为目标。尖晶石层的Li1.5MnTiO4 +δ整体颗粒表现出优异的循环稳定性,但速率性能较差。为了解决该缺点,通过电纺丝合成了Li1.5MnTiO4 +δ尖晶石层的异质结构的超长纳米纤维。直径约80纳米的均匀纳米纤维由包裹在30微米长的纤维中的微小八面体颗粒形成。与Li1.5MnTiO4 +δ纳米颗粒和块状颗粒相比,Li1.5MnTiO4 +δ纳米纤维表现出改善的速率能力。复合阴极的均匀一维纳米结构在C / 5和1 C速率下分别显示出235和170 mAh g -1 的增强容量。其独特的结构为Li + 的扩散提供了较大的有效接触面积,并降低了电荷转移电阻。此外,层状相有助于其在3 regionV以上的区域的容量,与散装颗粒(534 Wh kg -1 -1 )。 >)。

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