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首页> 外文期刊>Journal of nanoscience and nanotechnology >Electrochemical Characteristics of All-Solid Lithium Ion Battery with Lithium Titanate/Lithium Lanthanum Zirconium Oxide Composite Electrode
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Electrochemical Characteristics of All-Solid Lithium Ion Battery with Lithium Titanate/Lithium Lanthanum Zirconium Oxide Composite Electrode

机译:钛酸锂/镧锂氧化锆复合电极全固体锂离子电池的电化学特性

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Composite anodes for all solid-state lithium secondary batteries based on lithium titanate (Li4Ti5O12) were fabricated by a wet process. The effect of the content of polyethylene oxide in the lithium titanate composite anode on the interfacial control for enhancing the ionic conductivity and binding between the constituent materials in the electrode was examined. The content of Super-P and garnet-type lithium lanthanum zirconium oxide in the composite lithium titanate electrode was fixed and the electrochemical characteristics of a half-cell were evaluated as a function of the lithium titanate and polyethylene oxide content in the electrode, where the polyethylene oxide content was varied from 35-70 wt%. A maximum discharge capacity of about 160 mAh g(-1) was obtained with the electrode comprising lithium titanate, lithium lanthanum zirconium oxide, Super-P, and polyethylene oxide in a weight ratio of 40:10:10:40. This value is about 94% of the theoretical capacity (170 mAh g(-1)) of the lithium titanate electrode, and was almost equal to the half-cell capacity of the liquid-type congener. Furthermore, when this composite lithium titanate electrode was fabricated and evaluated in the full cell of an all-solid lithium secondary battery, a discharge capacity of about 140 mAh g(-1) was obtained.
机译:基于钛酸锂(Li4Ti5O12)的所有固态锂二次电池的复合阳极通过湿法制备。研究了在钛酸锂复合阳极上对用于增强离子电导率的界面对照和电极组成材料之间的结合的介质对钛酸锂含量的影响。的Super-P的,并在复合钛酸锂电极含量石榴石型锂镧锆氧化物是固定的,半电池的电化学特性的评价为在电极中的钛酸锂和聚环氧乙烷含量的函数,其中所述聚环氧乙烷含量从35-70wt%变化。用包含钛酸锂,锂锂锆氧化锆,超级锂的电极获得约160mAhg(-1)的最大放电容量,其重量比为40:10:10:40的重量比。该值约为钛酸锂电极的理论容量的94%(170mAhg(-1)),几乎等于液体型Congener的半电池容量。此外,当在全固体锂二次电池的全细胞中制造并评价该复合锂钛酸锂电极时,得到约140mAhg(-1)的放电容量。

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