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Information Journal Paper

Title

SYNTHESIS OF NANO-CRYSTALLINE ZN-DOPED AND TIN OXIDE THIN FILMS FOR ION-LITHIUM MICRO BATTERIES

Pages

  20-28

Abstract

 In this research, Nano crystalline Zn-doped and pure tin oxide THIN FILMs were synthesized by electron beam evaporation technique. X-ray diffraction patterns indicated that as-deposited THIN FILMs were amorphous SnO. Heat treatment at 500oC for 10 h was applied to the as-deposited THIN FILMs, which led to nanocrystalline tetragonal SnO2. AFM images showed that the morphology of as-deposited THIN FILMs was very smooth and fine, however, heat treatment caused that the morphology of THIN FILMs were gradually rough. Furthermore, SEM images revealed that the microstructure of THIN FILMs was compact and homogeneous. Elemental mapping of THIN FILMs proved the homogeneous distribution of zinc atoms in the structure of SnO2. Finally, electrochemical evaluation of pure and Zn-doped tin oxides as ANODEs for microbatteries was investigated by using galvanostatic charge/discharge in the potential range of 0-1.7 voltage. The results showed that specific capacity of pure tin oxide THIN FILMs increased from 69.5 mAhcm-2mm-1 to 137.6 mAhcm-2mm-1 for Zn-doped tin oxide THIN FILMs.

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    APA: Copy

    RAHIMIPOUR, M.R., & VAZEI, M.R.. (2013). SYNTHESIS OF NANO-CRYSTALLINE ZN-DOPED AND TIN OXIDE THIN FILMS FOR ION-LITHIUM MICRO BATTERIES. NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH), 5(13), 20-28. SID. https://sid.ir/paper/185898/en

    Vancouver: Copy

    RAHIMIPOUR M.R., VAZEI M.R.. SYNTHESIS OF NANO-CRYSTALLINE ZN-DOPED AND TIN OXIDE THIN FILMS FOR ION-LITHIUM MICRO BATTERIES. NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH)[Internet]. 2013;5(13):20-28. Available from: https://sid.ir/paper/185898/en

    IEEE: Copy

    M.R. RAHIMIPOUR, and M.R. VAZEI, “SYNTHESIS OF NANO-CRYSTALLINE ZN-DOPED AND TIN OXIDE THIN FILMS FOR ION-LITHIUM MICRO BATTERIES,” NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH), vol. 5, no. 13, pp. 20–28, 2013, [Online]. Available: https://sid.ir/paper/185898/en

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