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Cycle stability increase by insertion of Li-La-Ta-O thin-film electrolyte between cathode and solid electrolyte for all-solid-state battery

机译:通过在全固态电池的阴极和固体电解质之间插入Li-La-Ta-O薄膜电解质来提高循环稳定性

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Recently, all-solid-state batteries (ASSBs) with an inorganic solid electrolyte have attracted significant interest because of their high potential for unique applications in space, deep sea, and radioactive environments. The inorganic solid electrolyte is one of the most fundamental parts since it determines the C rate and self-discharge properties. We prepared a series of ASSBs based on lithium lanthanum tantalum oxide (LLTO) solid-electrolyte thin films with thicknesses of 0, 100, and 200 nm by radio frequency (RF) magnetron sputtering. The microstructure and composition of the LLTO thin films were investigated by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and inductively coupled plasma atomic emission spectroscopy (ICP-AES). The results show that the LLTO thin films have a high ionic conductivity, and they reduce the contact resistance between the cathode and the solid electrolyte, and increase the ion path between the cathode and the bulk electrolyte. Thus, they can be applied to ASSBs as an interlayer between the cathode and the solid electrolyte. (C) 2015 Elsevier B.V. All rights reserved.
机译:近来,具有无机固体电解质的全固态电池(ASSB)引起了巨大的兴趣,因为它们在太空,深海和放射性环境中具有独特的应用潜力。无机固体电解质是最基本的部分之一,因为它决定了C速率和自放电性能。我们通过射频(RF)磁控管溅射制备了一系列基于氧化镧钽酸锂(LLTO)固体电解质薄膜的ASSB,厚度分别为0、100和200 nm。通过X射线衍射(XRD),X射线光电子能谱(XPS)和电感耦合等离子体原子发射光谱(ICP-AES)研究了LLTO薄膜的微观结构和组成。结果表明,LLTO薄膜具有高的离子电导率,并且它们降低了阴极与固体电解质之间的接触电阻,并增加了阴极与整体电解质之间的离子路径。因此,它们可以作为阴极和固体电解质之间的中间层应用于ASSB。 (C)2015 Elsevier B.V.保留所有权利。

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