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Enhanced charge collection efficiency by thin-TiO2-fihn deposition on FTO-coated ITO conductive oxide in dye-sensitized solar cells

机译:染料敏化太阳能电池中FTO涂层ITO导电氧化物上的TiO2-薄膜稀沉积提高了电荷收集效率

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摘要

We have investigated effect of thin TiO2 layers deposited on an indium tin oxide (ITO)/fluorine-doped tin oxide (FTO) double-layered transparent conductive oxide on the performance of dye-sensitized solar cell. FTO is deposited on an ITO-coated glass, followed by TiO2 deposition using a radio frequency magnetron sputtering technique. The thicknesses of the sputtered-TiO2 layers are varied from 10 nm to 20 nm, while the ITO and FTO are fixed to be 150 nm and 70 nm, respectively. Atomic force microscopy (AFM) shows that the surface roughness is similar but the surface morphology is altered by thin TiO2 layer deposition. The sheet resistance of the ITO/FTO conductive glass is hardly changed by thin TiO2 layer deposition. Photovoltaic performance is significantly enhanced after introduction of thin TiO2 underlayer. The 15 nm thick TiO2 underlayer leads to the increases of photocurrent density from 9 mA cm~(-2) to 10.3 mA cm~(-2) and fill factor from 0.715 to 0.747, as a result, the overall conversion efficiency is improved from 5.28% to 6.37%, corresponding to 20.6% increase. Photovoltage, however, remains almost unchanged. Photocurrent is improved over the entire wavelength. The increased transmittance at wavelength ranging from 300 to 600 nm contributes in part to increase in photocurrent. Improvement of charge collection efficiency from ~90%> to ~97% is also attributed to the increased photocurrent, where the increased transport rate is responsible for the improved charge collection, indicating that the thin TiO2 underlayer has influence on opto-electronic property in the dye-adsorbed bulk TiO2 film.
机译:我们已经研究了在氧化铟锡(ITO)/掺氟氧化锡(FTO)双层透明导电氧化物上沉积的TiO2薄层对染料敏化太阳能电池性能的影响。将FTO沉积在涂有ITO的玻璃上,然后使用射频磁控溅射技术沉积TiO2。溅射的TiO2层的厚度在10 nm至20 nm之间变化,而ITO和FTO分别固定为150 nm和70 nm。原子力显微镜(AFM)显示,表面粗糙度相似,但表面形态因TiO2薄层沉积而改变。 ITO / FTO导电玻璃的薄层电阻几乎不会因TiO2薄层沉积而改变。引入薄的TiO2底层后,光伏性能显着提高。 15 nm厚的TiO2底层导致光电流密度从9 mA cm〜(-2)增加到10.3 mA cm〜(-2),填充系数从0.715增加到0.747,结果,总的转换效率从5.28%至6.37%,对应增加20.6%。但是,光电压几乎保持不变。光电流在整个波长范围内得到改善。在300至600 nm波长范围内增加的透射率部分地导致光电流的增加。电荷收集效率从〜90%>提高到〜97%也归因于光电流的增加,其中增加的传输速率有助于改善电荷收集,这表明薄的TiO2底层对薄膜中的光电性能有影响。染料吸附的块状TiO2薄膜。

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