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Complex hydride for composite negative electrode-applicable to bulk-type all-solid-state Li-ion battery with wide temperature operation

机译:复合负极用复合氢化物-适用于宽温度操作的大容量型全固态锂离子电池

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A composite negative electrode for use in bulk-type all-solid-state batteries was developed by combining the solid electrolyte Li-4(BH4)(3)I (LiBH4 doped with LiI), acetylene black (AB) (as a conductive additive), and lithium titanate (Li4Ti5O12, LTO). Because of the highly deformable nature of the complex hydride, hand milling and subsequent uniaxial pressing were sufficient to ensure tight interfacial contact As a result, the composite negative electrode allowed successful operation of a bulk-type all-solid-state battery from room temperature (23 degrees C) to 150 degrees C. The composite negative electrode was characterized via microstructural observation and using electrochemical techniques. In the prepared composite negative electrode, LTO, Li-4(BH4)(3)I, and AB were homogeneously dispersed and formed tightly contacted interfaces. At 150 degrees C, the battery exhibited high discharging capacities of 170 and 158 mAh g(-1) for the 1st and 2nd cycles, respectively, which corresponded to LTO utilization ratios of 97% and 90%. Moreover, it retained 140 mAh g(-1) at the 100th cycle, which equates to a 90% capacity retention ratio from the 2nd cycle. Furthermore, the battery was successfully operated at room temperature (23 degrees C), exhibiting discharging capacities of 122 mAh g(-1) for the 1st cycle and 111 mAh g(-1) for the 5th cycle (capacity retention ratio of 91%). At both temperatures, the coulombic efficiency was nearly 100%, indicating that the charge/discharge reactions proceeded without any significant side-reactions. This good performance is due to the small charge-transfer resistance at the LTO interface resulting from the tight contact between the constituents of the composite electrode, and suggests that LiI-doped LiBH4 is a promising solid electrolyte for practical composite electrodes. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过将固体电解质Li-4(BH4)(3)I(掺有LiI的LiBH4),乙炔黑(AB)(作为导电添加剂)结合使用,开发出了用于大容量全固态电池的复合负极)和钛酸锂(Li4Ti5O12,LTO)。由于复合氢化物的高度可变形性,手动铣削和随后的单轴压制足以确保紧密的界面接触。结果,复合负极使大容量型全固态电池能够在室温下成功运行( 23℃至150℃。通过微结构观察和使用电化学技术表征复合负极。在制备的复合负极中,LTO,Li-4(BH4)(3)I和AB均匀分散并形成紧密接触的界面。在150摄氏度下,该电池在第一个和第二个循环中分别表现出170和158 mAh g(-1)的高放电容量,分别对应于97%和90%的LTO利用率。此外,它在第100个循环中保留了140 mAh g(-1),相当于从第2个循环开始具有90%的容量保持率。此外,该电池在室温(23摄氏度)下成功运行,第一个循环的放电容量为122 mAh g(-1),第五个循环的放电容量为111 mAh g(-1)(容量保持率为91% )。在这两个温度下,库仑效率接近100%,这表明充电/放电反应的进行没有任何明显的副反应。这种良好的性能归因于复合电极各成分之间的紧密接触而导致的LTO界面处的电荷转移电阻小,这表明掺LiI的LiBH4是用于实际复合电极的有希望的固体电解质。 (C)2015 Elsevier B.V.保留所有权利。

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