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Spray deposition and characterization of nanostructured Li doped NiO thin films for application in dye-sensitized solar cells

机译:用于染料敏化太阳能电池的纳米结构掺锂NiO薄膜的喷雾沉积与表征

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Transparent conducting Li (0-5 wt%) doped NiO thin films with preferential growth along the (111) plane were deposited onto glass substrates by pyrolytic decomposition of nickel nitrate and lithium chloride precursors at 500 degrees C in air. The effect of Li concentration on the structural, optical and transport properties of NiO thin films was studied by x-ray diffraction (XRD), scanning electron microscopy (SEM), atomic force microscopy (AFM), spectral transmittance, photoluminescence and linear four-probe resistivity. Activation energies as a function of Li concentration were deduced from the temperature dependent resistivity data measured in the range 300-448 K. The figure of merit was deduced by combining the spectral transmittance and sheet resistance values. The variation in properties of NiO thin film due to Li doping are discussed based on the above results. A dye-sensitized solar cell has also been fabricated for the optimized Li doped NiO thin film and the results are presented.
机译:通过在空气中在500摄氏度下硝酸镍和氯化锂前驱体的热分解,在(111)面上优先生长的,掺杂透明导电Li(0-5 wt%)的NiO薄膜沉积在玻璃基板上。通过X射线衍射(XRD),扫描电子显微镜(SEM),原子力显微镜(AFM),光谱透射率,光致发光和线性四能谱研究了Li浓度对NiO薄膜结构,光学和传输性质的影响。探针电阻率。由在300-448 K范围内测得的与温度相关的电阻率数据推导出作为Li浓度函数的活化能。通过结合光谱透射率和薄层电阻值推导品质因数。基于上述结果,讨论了由于Li掺杂而导致的NiO薄膜的性能变化。还制备了染料敏化太阳能电池用于优化的Li掺杂NiO薄膜,并给出了结果。

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