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首页> 外文期刊>Energy & environmental science >A multi-objective optimization-based layer-by-layer blade-coating approach for organic solar cells: rational control of vertical stratification for high performance
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A multi-objective optimization-based layer-by-layer blade-coating approach for organic solar cells: rational control of vertical stratification for high performance

机译:基于多目标优化的有机太阳能电池逐层叶片涂覆方法:合理控制垂直分层以实现高性能

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摘要

A major breakthrough in organic solar cells (OSCs) in the last thirty years was the development of the bulk heterojunction (BHJ) solution processing strategy, which effectively provided a nanoscale phase-separated morphology, aiding in the separation of Coulombically bound excitons and facilitating charge transport and extraction. Compared with the application of the layer-by-layer (LbL) approach proposed in the same period, the BHJ spin-coating technology shows overwhelming advantages for evaluating the performance of photovoltaic materials and achieving more-efficient photoelectric conversion. Thus, in this study, we have further compared the BHJ and LbL processing strategies via the doctor-blade coating technology because it is a roll-to-roll compatible high-throughput thin film fabrication route. We systematically evaluated multiple target parameters, including morphological characteristics, optical simulation, physical kinetics, device efficiency, and blend stability issues. It is worth emphasizing that our findings disprove the old stereotypes such as the BHJ processing method is superior to the LbL technology for the preparation of high-performance OSCs and the LbL approach requires an orthogonal solvent and donor/acceptor materials with special solubility. Our studies demonstrate that the LbL blade-coating approach is a promising strategy to effectively reduce the efficiency-stability gap of OSCs and even a superior alternative to the BHJ method in commercial applications.
机译:在过去的30年中,有机太阳能电池(OSC)的一个重大突破是本体异质结(BHJ)溶液处理策略的发展,该策略有效地提供了纳米级相分离的形态,有助于分离库仑结合的激子并促进电荷的产生。运输和提取。与同期提出的逐层(LbL)方法相比,BHJ旋涂技术在评估光伏材料的性能和实现更高效的光电转换方面显示出压倒性的优势。因此,在这项研究中,我们通过刮墨刀涂层技术进一步比较了BHJ和LbL加工策略,因为它是卷对卷兼容的高通量薄膜制造路线。我们系统地评估了多个目标参数,包括形态特征,光学模拟,物理动力学,器件效率和混合稳定性问题。值得强调的是,我们的发现证明了陈旧的刻板印象,例如BHJ加工方法在制备高性能OSC方面优于LbL技术,而LbL方法需要正交溶剂以及具有特殊溶解度的供体/受体材料。我们的研究表明,LbL叶片涂覆方法是一种有效降低OSC效率-稳定性差距的有前途的策略,甚至是商业应用中BHJ方法的替代方案。

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