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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Vertical phase separation and light-soaking effect improvements by photoactive layer spin coating initiation time control in air-processed inverted organic solar cells
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Vertical phase separation and light-soaking effect improvements by photoactive layer spin coating initiation time control in air-processed inverted organic solar cells

机译:通过光敏层旋涂引发时间控制,在空气处理的倒置有机太阳能电池中改善垂直相分离和光吸收效果

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摘要

Inverted type organic solar cells have been regarded more promising over normal type, owing to a favorable vertical phase separation and air-processability. Many techniques, such as thermal or solvent annealing, slow growth method, melting bi-layers etc. have been employed to improve the morphology of photoactive layer, which is one of the advantages of inverted type OSCs. As a result, the device performance is greatly enhanced which is also reflected in the current-density versus voltage curve. However, some of the methods presented above are difficult and costly to perform. In addition, inverted OSCs still employ certain metal oxide electron-transporting layers, which impose UV activation time due to light-soaking effect. Here we show a facile method that can control the vertical phase separation as well as minimize the light-soaking effect. By leaving the photoactive solution with a low volatile solvent in air before spin coating, conductive polymers (donor) and fullerene derivatives (acceptor) were separated vertically in a way that their charge extraction is enhanced. Besides, oxygen and impurities at the contact on ETL were removed by leaving the solution for a certain period. Mechanisms of these improvements were evidenced by various analytical techniques and empirical tests using different materials in different environments. We anticipate this finding can expedite the OSC research and its usage in all air-processed inverted OSCs. (C) 2015 Elsevier B.V. All rights reserved.
机译:归因于垂直相分离和空气可加工性,倒置型有机太阳能电池被认为比普通型更有希望。已经采用了许多技术,例如热或溶剂退火,缓慢生长方法,熔融双层等来改善光敏层的形态,这是倒置型OSC的优点之一。结果,器件性能大大提高,这也反映在电流密度与电压的关系曲线中。但是,上面介绍的某些方法执行起来困难且成本高。另外,倒置OSC仍采用某些金属氧化物电子传输层,由于光吸收效应,这会增加UV激活时间。在这里,我们展示了一种可以控制垂直相分离并最小化吸光效果的简便方法。通过在旋涂之前在空气中将光敏溶液与低挥发性溶剂混合在一起,可以以增强电荷提取的方式垂直分离导电聚合物(施主)和富勒烯衍生物(受主)。此外,通过将溶液放置一定时间,可以除去ETL接触处的氧气和杂质。这些改进的机制通过各种分析技术和在不同环境中使用不同材料的经验测试得到证明。我们希望这一发现可以加快OSC研究及其在所有经过空气处理的倒置OSC中的使用。 (C)2015 Elsevier B.V.保留所有权利。

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