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High Cycling Stability and Extreme Rate Performance in Nanoscaled LiMn2O4 Thin Films

机译:纳米LiMn2O4薄膜的高循环稳定性和极速性能

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摘要

Ultrathin LiMn2O4 electrode layers with average crystal size of similar to 15 nm were fabricated by means of radio frequency sputtering. Cycling behavior and rate performance was evaluated by galvanostatic charge and discharge measurements. The thinnest films show the highest volumetric capacity and best cycling stability, retaining the initial capacity over 70 (dis)charging cycles when manganese dissolution is prevented. The increased stability for film thicknesses below SO nm allows cycling in both the 4 and 3 V potential regions, resulting in a high volumetric capacity of 1.2 Ah/cm(3). It is shown that the thinnest films can be charged to 75% of their full capacity within 18 s (200 C), the best rate performance reported for LiMn2O4. This is explained by the short diffusion lengths inherent to thin films and the absence of phase transformation.
机译:通过射频溅射法制备了平均晶粒尺寸接近15 nm的超薄LiMn2O4电极层。通过恒电流充电和放电测量来评估循环行为和速率性能。最薄的薄膜显示出最高的容积容量和最佳的循环稳定性,在防止锰溶解的情况下,在超过70个(放电)放电循环中仍保持了初始容量。对于低于SO nm的膜厚度,增加的稳定性允许在4 V和3 V电位区域中循环,从而导致1.2 Ah / cm(3)的高体积容量。结果表明,最薄的薄膜可以在18 s(200 C)内充电至其全部容量的75%,这是LiMn2O4的最佳倍率性能。这可以通过薄膜固有的短扩散长度和不存在相变来解释。

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