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Li-V-Si-O thin film electrolyte for all-solid-state Li-ion battery

机译:全固态锂离子电池用Li-V-Si-O薄膜电解质

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Ultraviolet (355 nm) reactive pulsed laser deposition (PLD) using a mixture of Li_2CO_3, V_2O_5 and SiO_2 as a target was employed to prepare Li-V-Si-O thin film electrolyte in O_2 gas ambient for all-solid-state Li-ion battery. The morphology and structure of Li-V-Si-O thin films were investigated by scanning electron microscopy (SEM) and X-ray diffraction (XRD) techniques, and the properties of thin films strongly depend on the substrate temperature. A dense and smooth Li-V-Si-O thin film without pinholes and cracks was obtained at substrate temperature of 300℃. The ionic conductivity of this thin film electrolyte was determined by AC impedance measurement, and an ionic conductivity was estimated to be 3.98 x 10~(-7) S/cm at 25℃ with conductivity activation energy of 0.55 eV. In addition, the ionic transference number was measured by Wagner's DC polarization technique and the cyclic voltammetric measurement was performed to investigate the electrochemical stability of the thin film electrolyte.
机译:以Li_2CO_3,V_2O_5和SiO_2的混合物为靶标的紫外(355 nm)反应脉冲激光沉积(PLD)被用于在O_2气体环境中制备用于全固态Li-的Li-V-Si-O薄膜电解质离子电池。 Li-V-Si-O薄膜的形貌和结构通过扫描电子显微镜(SEM)和X射线衍射(XRD)技术进行了研究,并且薄膜的性能强烈依赖于基板温度。在300℃的衬底温度下获得了致密且光滑的Li-V-Si-O薄膜,没有针孔和裂纹。通过交流阻抗测量来确定该薄膜电解质的离子电导率,并且在25℃,电导活化能为0.55eV的情况下,离子电导率估计为3.98×10〜(-7)S / cm。另外,通过Wagner的DC极化技术测量离子转移数,并进行循环伏安法测量以研究薄膜电解质的电化学稳定性。

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