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Analytical model for the photocurrent-voltage characteristics of bilayer MEH-PPV/TiO2 photovoltaic devices

机译:双层MEH-PPV / TiO2光电器件的光电流-电压特性分析模型

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摘要

The photocurrent in bilayer polymer photovoltaic cells is dominated by the exciton dissociation efficiency at donor/acceptor interface. An analytical model is developed for the photocurrent-voltage characteristics of the bilayer polymer/TiO photovoltaic cells. The model gives an analytical expression for the exciton dissociation efficiency at the interface, and explains the dependence of the photocurrent of the devices on the internal electric field, the polymer and TiO layer thicknesses. Bilayer polymer/TiO cells consisting of poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV) and TiO , with different thicknesses of the polymer and TiO films, were prepared for experimental purposes. The experimental results for the prepared bilayer MEH-PPV/TiO cells under different conditions are satisfactorily fitted to the model. Results show that increasing TiO or the polymer layer in thickness will reduce the exciton dissociation efficiency in the device and further the photocurrent. It is found that the photocurrent is determined by the competition between the exciton dissociation and charge recombination at the donor/acceptor interface, and the increase in photocurrent under a higher incident light intensity is due to the increased exciton density rather than the increase in the exciton dissociation efficiency.
机译:双层聚合物光伏电池中的光电流受供体/受体界面处的激子离解效率支配。针对双层聚合物/ TiO光伏电池的光电流-电压特性开发了一个分析模型。该模型给出了界面处激子解离效率的解析表达式,并解释了器件的光电流对内部电场,聚合物和TiO层厚度的依赖性。制备了由聚[2-甲氧基-5-(2-乙基己基氧基)-1,4-亚苯基亚乙烯基](MEH-PPV)和TiO组成的双层聚合物/ TiO电池,具有不同厚度的聚合物和TiO膜,用于实验目的。在不同条件下制备的双层MEH-PPV / TiO电池的实验结果令人满意地拟合到模型中。结果表明,增加TiO或增加聚合物层的厚度将降低器件中的激子离解效率,进而降低光电流。发现光电流由激子解离与给体/受体界面处的电荷复合之间的竞争决定,在较高入射光强度下光电流的增加归因于激​​子密度的增加而不是激子的增加解离效率。

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