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Efficient 'Light-soaking'-free Inverted Organic Solar Cells with Aqueous Solution Processed Low-Temperature ZnO Electron Extraction Layers

机译:水溶液处理的低温ZnO电子萃取层的高效“无光浸”型倒置有机太阳能电池

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摘要

Low-temperature processes are unremittingly pursued in the fabrication of organic solar cells. The paper reports that the highly efficient and "light-soaking"-free inverted organic solar cell can be achieved by using ZnO thin films processed from the aqueous solution method at a low temperature. The inverted organic solar with an aqueous-processed ZnO thin film annealed at 150 °C shows an efficiency of 3.79%. Even when annealed at a temperature as low as 80 °C, the device still shows an efficiency of 3.71%, With the proper annealing temperature of 80 °C, the flexible device, which shows an efficiency of 3.56%, is fabricated on PET. This flexible device still keeps the efficiency above 3.40% after bent for 1000 times with a curvature radius of 50 mm. In contrast, a low annealing temperature leads to an inferior device performance when the ZnO thin film is processed from the widely used sol-gel method. The device with sol-gel processed ZnO annealed at 150 °C only shows a PCE of 1.3%. Furthermore, the device shows a strong "light-soaking" effect, which is not observed in the device containing an aqueous-processed ZnO thin film. Our results suggest that the adopted aqueous solution method is a more efficient low temperature technique, compared with the sol-gel method.
机译:在有机太阳能电池的制造中一直坚持低温工艺。该论文报道,通过使用在低温下通过水溶液法处理的ZnO薄膜可以实现高效且无“光浸”的倒置有机太阳能电池。在150°C下经过水处理的ZnO薄膜退火的倒置有机太阳能电池的效率为3.79%。即使在低至80°C的温度下进行退火,该器件仍显示出3.71%的效率。在80°C的适当退火温度下,在PET上制造的柔性器件显示出3.56%的效率。这种柔性装置在弯曲50毫米曲率半径1000次后仍能保持3.40%以上的效率。相反,当通过广泛使用的溶胶-凝胶法加工ZnO薄膜时,低的退火温度导致较差的器件性能。溶胶-凝胶处理的ZnO在150°C退火的器件仅显示1.3%的PCE。此外,该器件显示出强的“光吸收”效果,这在包含经水处理的ZnO薄膜的器件中未观察到。我们的结果表明,与溶胶-凝胶法相比,采用水溶液法是一种更有效的低温技术。

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