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Bilayer Polymer Solar Cells with Improved Power Conversion Efficiency and Enhanced Spectrum Coverage

机译:双层聚合物太阳能电池,具有改善的功率转换效率和增强频谱覆盖率

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We demonstrate the construction of an efficient bilayer polymer solar cell comprising of Poly(3‐hexylthiophene) (P3HT) as a p‐type semiconductor and asymmetric fullerene (C70) as n‐type counterparts. The bilayer configuration was very efficient compared to the individual layer perfornance and it behaved like a regular p‐n junction device. The photovoltaic characteristic of the bilayers were studied under AM 1.5 solar radiation and the optimized device parameters are the following: Voc? = ?0.5V, Jsc? = ?10.1mA/cm~2, FF? = ?0.60 and power conversion efficiency of 3.6 %. A high fill factor of ~0.6 was achieved, which is only slightly reduced at very intense illumination. Balanced mobility between p‐and n‐layers is achieved which is essential for achieving high device performance. Correlation between the crystallinity, morphology and the transport properties of the active layers is established. The External quantum efficiency (EQE) spectral distribution of the bilayer devices with different processing solvents correlates well with the trends of short circuit current densities (J_(sc)) measured under illumination. Efficiency of the bilayer devices with rough P3HT layer was found to be about 3 times higher than those with a planar P3HT surface. Hence it is desirable to have a larger grains with a rough surface of P3HT layer for providing larger interfacial area for the exciton dissociation.
机译:我们证明了一种高效的双层聚合物太阳能电池,其包含聚(3-己基噻吩)(P3HT)作为p型半导体和不对称富勒烯(C70)作为N型对应物。与各层精选相比,双层配置非常有效,并且它表现得像常规P-n结装置。在AM 1.5太阳辐射下研究了双层的光伏特性,优化的器件参数如下:VOC? =??0.5V,JSC? =?10.1ma / cm〜2,ff? =?0.60,功率转换效率为3.6%。实现了〜0.6的高填充因子,这在非常强烈的照明中仅略微降低。实现了P-和N层之间的平衡移动,这对于实现高设备性能至关重要。建立了结晶度,形态学与活性层的运输性质之间的相关性。具有不同处理溶剂的双层器件的外部量子效率(EQE)光谱分布与照明下测量的短路电流密度(J_(SC))的趋势相相关。发现具有粗糙P3HT层的双层器件的效率约为比具有平面P3HT表面的表面高出3倍。因此,希望具有具有P3HT层的粗糙表面的较大晶粒,用于为激子解离提供较大的界面区域。

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