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Influence of the thickness on optical properties of sprayed ZnO hole-blocking layers dedicated to inverted organic solar cells

机译:厚度对专用于倒置有机太阳能电池的喷涂ZnO空穴阻挡层光学性质的影响

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The sprayed pyrolysis technique was carried out to prepare ZnO thin films with different thickness dedicated to the optimization of the growth process of the multi-layers constituting inverted polymer solar cells in the aim to achieved better efficiency in photovoltaic energy conversion. The optical constants and dispersion energy parameters of the zinc oxide thin films were determined using optical characterization method. The transmittance measurements showed that all samples have high transparencies in the visible range, as generally used by solar cells. The band gap is slightly increased from 3.28 to 3.30 eV with the film thickness varying from 446 to 645nm. The oscillator energy E0 and the dispersion energy E_d were deducted. The real and imaginary parts of dielectric constant for ZnO thin films were also determined.
机译:进行喷涂的热解技术以制备具有不同厚度的ZnO薄膜,该薄膜专用于构成倒置聚合物太阳能电池的多层的生长过程的优化,以实现光伏能量转换的更好效率。使用光学表征方法测定氧化锌薄膜的光学常数和色散能量。透射率测量结果表明,所有样品在可见范围内具有高透明胶片,如太阳能电池通常使用的那样。带隙从3.28到3.30eV略微增加,薄膜厚度从446到645nm变化。挖掘振荡器能量E0和分散能E_D。还确定了ZnO薄膜的介电常数的真实和虚部。

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