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Theoretical analysis and the morphology control of vertical phase segregation in high-efficiency polymer/fullerene solar cells

机译:高效聚合物/富勒烯太阳能电池中垂直相偏析的理论分析和形态控制

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摘要

The morphology control and optimization in the film-forming process and nanoscale phase separation of donor/acceptor interpenetrating networks played an important role in improving the performance of organic solar cells. Vertical phase separation was defined as an inhomogeneous distribution or concentration gradient of polymer/fullerene blends in the spin-coated film, due to the surface energy of the respective components and their interaction with the substrate or the intermediate buffer layers. In this report, we demonstrated, in detail, the theory of vertical phase separation morphology and control of conventional structure solar cells and inverted configuration solar cells, including the choice of solvents and the drying rate, the surface energy control, thermal annealing, as well as external electric field. In particular, we first proposed internal electronic field model of vertical phase separation and revealed the internal rules and organic semiconductor physics and its mechanism for improving the device efficiency and stability.
机译:供体/受体互穿网络的成膜过程中的形态控制和优化以及纳米级相分离在提高有机太阳能电池的性能中起着重要作用。垂直相分离被定义为旋涂膜中聚合物/富勒烯共混物的不均匀分布或浓度梯度,这归因于各个组分的表面能以及它们与基材或中间缓冲层的相互作用。在本报告中,我们详细展示了垂直相分离形态的理论以及常规结构太阳能电池和反向配置太阳能电池的控制,包括溶剂和干燥速率的选择,表面能控制,热退火以及作为外部电场。特别是,我们首先提出了垂直相分离的内部电场模型,并揭示了内部规则,有机半导体物理学及其提高器件效率和稳定性的机理。

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