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Phthalocyanine based Schottky solar cells

机译:基于酞菁的肖特基太阳能电池

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Phthalocyanine (Pc) materials are commonly used in organic solar cells. Four different phthalocyanines, nickel phthalocyanine (NiPc), copper phthalocyanine (CuPc), iron phthalocyanine (FePc), and cobalt phthalocyanine (CoPc) have been investigated for organic solar cell applications. The devices consisted of indium tin oxide (ITO) coated glass substrate, PC layer, and aluminum (Al) electrode. It has been found that ITO/CuPc/Al Schottky cell exhibits the best performance. To investigate the influence of the active layer thickness on the cell performance, cells with several different thicknesses were fabricated and optimal value was found. Schottky cell exhibits optimal performance with one ohmic and one barrier contact. However, it is suspected that ITO/CuPc contact is not ohmic. Therefore, we have investigated various ITO surface treatments for improving the performance of CuPc based Schottky solar cell. We have found that cell on ITO treated with HCl and UV-ozone exhibits the best performance. AMl power conversion efficiency can be improved by 30% compared to cell made with untreated ITO substrate. To improve power conversion efficiency, double or multilayer structure are required, and it is expected that suitable ITO treatments for those devices will further improve their performance by improving the contact between ITO and phthalocyanine layer.
机译:酞菁(Pc)材料通常用于有机太阳能电池中。已针对有机太阳能电池应用研究了四种不同的酞菁,镍酞菁(NiPc),铜酞菁(CuPc),铁酞菁(FePc)和钴酞菁(CoPc)。该设备由氧化铟锡(ITO)涂层的玻璃基板,PC层和铝(Al)电极组成。已经发现ITO / CuPc / Al肖特基电池表现出最好的性能。为了研究活性层厚度对电池性能的影响,制造了具有几种不同厚度的电池,并找到了最佳值。肖特基电池具有一种欧姆接触和一种势垒接触的最佳性能。但是,怀疑ITO / CuPc接触不是欧姆性的。因此,我们研究了各种ITO表面处理方法,以改善基于CuPc的肖特基太阳能电池的性能。我们发现,用HCl和UV-臭氧处理过的ITO上的电池表现出最好的性能。与用未经处理的ITO基板制成的电池相比,AM1功率转换效率可以提高30%。为了提高功率转换效率,需要双层或多层结构,并且期望用于这些器件的合适的ITO处理将通过改善ITO与酞菁层之间的接触来进一步提高其性能。

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