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Probing the Energy Level Alignment and the Correlation with Open-Circuit Voltage in Solution-Processed Polymeric Bulk Heterojunction Photovoltaic Devices

机译:在溶液处理的聚合物本体异质结光伏器件中探测能级对准及其与开路电压的相关性

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Energy level alignment at the organic donor and acceptor interface is a key to determine the photovoltaic performance in organic solar cells, but direct probing of such energy alignment is still challenging especially for solution processed bulk heterojunction (BHJ) thin films. Here we report a systematic investigation on probing the energy level alignment with different approaches in five commonly used polymer:[6,6]-phenyl-C-71-butyric acid methyl ester (PCBM) BHJ systems. We find that by tuning the weight ratio of polymer to PCBM the electronic features from both polymer and PCBM can be obtained by photoemission spectroscopy. Using this approach, we find that some of the BHJ blends simply follow vacuum level alignment, but others show strong energy level shifting as a result of Fermi level pinning. Independently, by measuring the temperature-dependent open-circuit voltage (V-OC), we find that the effective energy gap (E-eff), the energy difference between the highest occupied molecular orbital of the polymer donor (EHOMO-D) and lowest unoccupied molecular orbital of the PCBM acceptor (EHOMO-A), obtained by photoemission spectroscopy in all polymer:PCBM blends has an excellent agreement with the extrapolated V-OC at 0 K Consequently, the photovoltage loss of various organic BHJ photovoltaic devices at room temperature is in a range of 0.3-0.6 V. It is believed that the demonstrated direct measurement approach of the energy level alignment in solution-processed organic BHJ will bring deeper insight into the origin of the V-OC and the corresponding photovoltage loss mechanism in organic photovoltaic cells.
机译:有机供体和受体界面处的能级对准是确定有机太阳能电池中光伏性能的关键,但是直接探测这种能量对准仍然是挑战,特别是对于溶液处理的体异质结(BHJ)薄膜。在这里,我们报告了一种系统的调查,该调查是在五种常用的聚合物:[6,6]-苯基-C-71-丁酸甲酯(PCBM)BHJ系统中使用不同的方法来探测能级对准的。我们发现,通过调节聚合物与PCBM的重量比,可以通过光发射光谱法获得聚合物和PCBM的电子特征。使用这种方法,我们发现某些BHJ共混物仅遵循真空能级对准,但是其他一些由于费米能级固定而显示出很强的能级移动。通过测量与温度有关的开路电压(V-OC),我们独立地发现有效能隙(E-eff),聚合物供体的最高占据分子轨道(EHOMO-D)与通过光发射光谱法在所有聚合物:PCBM混合物中获得的PCBM受体(EHOMO-A)的最低未占用分子轨道与外推的V-OC在0 K下具有极佳的一致性。因此,各种有机BHJ光伏器件在室温下的光电压损失温度在0.3-0.6 V范围内。据信,溶液处理的有机BHJ中能级排列的直接测量方法将为V-OC的起源和相应的光电压损失机理提供更深入的了解。有机光伏电池。

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