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首页> 外文期刊>CERAMICS INTERNATIONAL >Large-area TiO_2 nanotube dye-sensitized solar cells using thermal-sprayed Ti layers on stainless steel
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Large-area TiO_2 nanotube dye-sensitized solar cells using thermal-sprayed Ti layers on stainless steel

机译:在不锈钢上使用热喷涂Ti层的大面积TiO_2纳米管染料敏化太阳能电池

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摘要

This work presents large-scale dye-sensitized solar cells and methods for their manufacture. A dye-sensitized solar cell device contains a photosensitive dye adsorbed on a large surface of the anode, and a transparent conductive cathode disposed opposite the anode, wherein platinum nano-catalytic particles adhere to its surface, and an electrolytic solution is sealed between the anode and the transparent conductive cathode. A titania nanotube film was fabricated by thermo-spraying titanium film on 304 stainless-steel substrate. The photo-current conversion efficiency was tested under an AM 1.5 solar simulator. The dye-sensitized solar cell device has a short current density of 8.22 mA cm~(-2), open voltage of 0.71 V, fill factor of 0.59, and conversion efficiency of 3.4%. The internal impedance of the dye-sensitized solar cell was detected and simulated using an electrical impedance spectra technique with inductance, resistance, and capacitance characteristics. The stainless-steel/titania, titania/ electrolyte, electrolyte, and electrolyte/(platinum/indium tin oxide) interfaces were simulated using an resistor-capacitor parallel circuit, and bulk materials such as stainless steel, tin doped indium oxide, and conducting wire were simulated by using a series of resistors and inductance.
机译:这项工作提出了大规模的染料敏化太阳能电池及其制造方法。染料敏化太阳能电池装置包含吸附在阳极大表面上的光敏染料和与阳极相对设置的透明导电阴极,其中铂纳米催化颗粒粘附在其表面上,并且电解液被密封在阳极之间和透明导电阴极。通过在304不锈钢基底上热喷涂钛膜来制备二氧化钛纳米管膜。在AM 1.5太阳模拟器下测试了光电流转换效率。该染料敏化太阳能电池装置的短电流密度为8.22mA cm·(-2),开路电压为0.71V,填充系数为0.59,转换效率为3.4%。使用具有电感,电阻和电容特性的电阻抗光谱技术,检测并模拟了染料敏化太阳能电池的内部阻抗。不锈钢/二氧化钛,二氧化钛/电解质,电解质和电解质/(铂/氧化铟锡)界面是使用电阻器-电容器并联电路以及诸如不锈钢,掺杂锡的氧化铟和导线之类的块状材料模拟的通过使用一系列电阻和电感进行仿真。

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