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Gallium-doped zinc oxide films as transparent and conductive substrates applying in dye-sensitized solar cell

机译:掺杂掺杂的氧化锌薄膜作为涂在染料敏化太阳能电池的透明和导电基材

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The gallium doped ZnO films were prepared and characterized to be used as transparent and conductive substrates replacing commercial ITO substrate applying for dye-sensitized solar cell. The thickness effects on electrical, optical and structural properties of gallium-doped ZnO films were investigated. It was found that the lowest resistivity of 3.96×10-4 Q·cm and the highest hall mobility of 14.12 cm2/(V·s) were obtained from 300 nm-thick gallium doped ZnO film as well as the high transmittance of 85% in the visible range. The demonstrated dye-sensitized solar cell used obtained gallium-doped ZnO substatrate showed the overall conversion efficiency of 1.77% with a fill factor of 0.507.
机译:制备镓掺杂的ZnO膜,并表征用作替换涂布染料敏化太阳能电池的商业ITO衬底的透明和导电基板。研究了对镓掺杂ZnO膜的电,光学和结构性能的厚度效应。发现3.96×10-4 q·cm的最低电阻率和14.12cm 2 /(v·s)的最高电阻率从300nm厚的镓掺杂的ZnO膜以及高透射率为85%在可见范围内。所证明的染料敏化太阳能电池获得掺杂掺杂的ZnO归氨酸,总转化效率为1.77%,填充因子为0.507。

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