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Semitransparent inverted polymer solar cells employing a sol-gel-derived TiO2 electron-selective layer on FTO and MoO3/Ag/MoO3 transparent electrode

机译:半透明倒置聚合物太阳能电池在FTO和MoO3 / Ag / MoO3透明电极上采用溶胶-凝胶衍生的TiO2电子选择层

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摘要

We report a new semitransparent inverted polymer solar cell (PSC) with a structure of glass/FTOc-TiO2/P3HT:PCBM/MoO3/Ag/MoO3. Because high-temperature annealing which decreased the conductivity of indium tin oxide (ITO) must be handled in the process of preparation of nanocrystalline titanium oxide (nc-TiO2), we replace glass/ITO with a glass/fluorine-doped tin oxide (FTO) substrate to improve the device performance. The experimental results show that the replacing FTO substrate enhances light transmittance between 400 and 600 nm and does not change sheet resistance after annealing treatment. The dependence of device performances on resistivity, light transmittance, and thickness of the MoO3/Ag/MoO3 film was investigated. High power conversion efficiency (PCE) was achieved for FTO substrate inverted PSCs, which showed about 75% increase compared to our previously reported ITO substrate device at different thicknesses of the MoO3/Ag/MoO3 transparent electrode films illuminated from the FTO side (bottom side) and about 150% increase illuminated from the MoO3/Ag/MoO3 side (top side).
机译:我们报告了一种新型半透明倒置聚合物太阳能电池(PSC),其结构为玻璃/ FTO / nc-TiO2 / P3HT:PCBM / MoO3 / Ag / MoO3。由于必须在制备纳米晶态氧化钛(nc-TiO2)的过程中进行降低铟锡氧化物(ITO)电导率的高温退火,因此我们用玻璃/氟掺杂的氧化锡(FTO)代替了玻璃/ ITO。 )基板,以改善装置效能。实验结果表明,更换后的FTO基板可提高400至600 nm之间的透光率,并且在退火处理后不会改变薄层电阻。研究了器件性能对MoO3 / Ag / MoO3膜的电阻率,透光率和厚度的依赖性。 FTO基板倒置的PSC达到了高功率转换效率(PCE),与我们先前报道的ITO基板设备相比,在从FTO侧(底部到底部)照射的MoO3 / Ag / MoO3透明电极膜的不同厚度下,功率转换效率提高了约75%。 ),并且从MoO3 / Ag / MoO3一侧(顶侧)照亮的光线增加了约150%。

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