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首页> 外文期刊>Journal of nanoscience and nanotechnology >Optical Properties and Electrochemical Performance of LiFePO4 Thin Films Deposited on Transparent Current Collectors
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Optical Properties and Electrochemical Performance of LiFePO4 Thin Films Deposited on Transparent Current Collectors

机译:透明集电器上沉积的LiFePO4薄膜的光学性质和电化学性能

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LiFePO4 thin film cathodes are deposited on various transparent conducting oxide thin films on glass, which are used as cathode current collectors. The XRD patterns show that the thin films have the phase of LiFePO, with an ordered olivine structure indexed to the orthorhombic Pmna space group. LiFePO4 thin film deposited on various TOO glass substrates exhibits transmittance of about 53%. The initial specific discharge capacities of LiFePO4 thin films are 25.0 mu Ah/cm(2) . mu m on FTO, 33.0 mu Ah/cm(2). mu m on ITO, and 13.0 mu Ah/cm(2) . mu m on AZO coated glass substrates. Interestingly, the retention capacities of LiFePO4 thin films are 76.0% on FTO, 31.2% on ITO, and 37.7% on AZO coated glass substrates at 20th cycle. The initial specific discharge capacity of the LiFePO4/FTO electrode is slightly lower, but the discharge capacities of the LiFePO4/FTO electrode relatively decrease less than those of the others such as LiFePO4/ITO and LiFePO4/AZO with cycling. The results reported here provide the high transparency of LiFePO4 thin films cathode materials and the good candidate as FTO current collector of the LiFePO4 thin film cathode of transparent thin film rechargeable batteries due to its high transparency and cyclic retention.
机译:LiFePO4薄膜阴极沉积在玻璃上的各种透明导电氧化物薄膜上,用作阴极集电器。 XRD图谱表明,薄膜具有LiFePO相,其橄榄石结构指向正交的Pmna空间群。沉积在各种TOO玻璃基板上的LiFePO4薄膜的透射率约为53%。 LiFePO4薄膜的初始比放电容量为25.0μAh / cm(2)。 FTO上的每平方公尺33.0 mu Ah / cm(2)。在ITO上的平均厚度为1μmAh / cm(2)。在AZO涂层的玻璃基板上有趣的是,在第20个循环中,LiFePO4薄膜在FTO上的保持能力为76.0%,在ITO上为31.2%,在AZO涂层玻璃基板上为37.7%。 LiFePO4 / FTO电极的初始比放电容量稍低,但是随着循环的进行,LiFePO4 / FTO电极的放电容量相对于诸如LiFePO4 / ITO和LiFePO4 / AZO的其他电极而言,放电容量的下降相对较小。此处报道的结果提供了高透明性的LiFePO4薄膜正极材料,并且由于其高透明性和循环保持性而成为透明薄膜可再充电电池LiFePO4薄膜正极的FTO集电器的良好候选者。

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