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Investigation on Aluminum-Based Amorphous Metallic Glass as New Anode Material in Lithium Ion Batteries

机译:铝基非晶金属玻璃作为锂离子电池新阳极材料的研究

摘要

Aluminum based amorphous metallic glass powders were produced and tested as the anode materials for the lithium ion rechargeable batteries. Ground Al₈₀Ni₁₀La₁₀ was found to have a low first cycle capacity of about 100 Ah/Kg. The considerable amount of intermetallic formed in the amorphous glass makes the aluminum inactive towards the lithium. The ball milled Al₈₈Ni₉Y₃ powders contain pure aluminum crystalline particles in the amorphous matrix and have first cycle capacity of about 500 Ah/Kg. Nevertheless, polarization was caused by oxidation introduced by the ball-milling process. The electrochemical performances of these amorphous metallic glasses need to be further investigated. Their full lithium insertion capacities cannot be confirmed until the compositions and particle size inside the metallic glass anodes, the conformation of the electrodes and the mechanical milling processes are optimized.
机译:制备了铝基非晶态金属玻璃粉末,并作为锂离子可充电电池的负极材料进行了测试。发现研磨的Al₈₀Ni&#x2081₀La&#x2081₀的低第一循环容量为约100Ah / Kg。在非晶玻璃中形成的大量金属间化合物使铝对锂失去活性。球磨的Al₈₈Ni₉Y₃粉末在非晶态基体中包含纯铝晶体颗粒,其第一循环容量约为500 Ah / Kg。然而,极化是由球磨过程引入的氧化引起的。这些非晶态金属玻璃的电化学性能需要进一步研究。直到金属玻璃阳极内部的组成和粒径,电极的构造以及机械研磨过程达到最佳状态,才能确定其完全的锂插入能力。

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