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A photochemical layer-by-layer solution process for preparing organic semiconducting thin films having the right material at the right place

机译:一种光化学逐层溶液法用于制备在正确位置具有正确材料的有机半导体薄膜

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摘要

The synergistic action of properly integrated semiconducting materials can bring about sophisticated electronic processes and functions. However, it is often a great challenge to achieve optimal performance in organic devices because of the limited control over the distribution of different materials in active layers. Here, we employ a unique photoreaction-based layer-by-layer solution process for preparing ternary organic photovoltaic layers. This process is applicable to a variety of compounds from wide-band-gap small molecules to narrow-band-gap π-extended systems, and enables the preparation of multicomponent organic semiconducting thin films having the right compound at the right place. The resulting ternary photovoltaic devices afford high internal quantum efficiencies, leading to an approximately two times higher power-conversion efficiency as compared to the corresponding binary bulk-heterojunction system. This work opens up new possibilities in designing materials and active layers for solution-processed organic electronic devices.
机译:适当集成的半导体材料的协同作用可以带来复杂的电子过程和功能。然而,由于对有源层中不同材料分布的有限控制,在有机器件中实现最佳性能通常是巨大的挑战。在这里,我们采用了独特的基于光反应的逐层解决方案工艺来制备三元有机光伏层。该方法适用于从宽带隙小分子到窄带隙π-扩展体系的各种化合物,并且能够制备在正确的位置具有正确的化合物的多组分有机半导体薄膜。所得的三元光伏器件提供了高的内部量子效率,与相应的二元体-异质结系统相比,导致了大约两倍的功率转换效率。这项工作为设计用于溶液处理的有机电子设备的材料和有源层开辟了新的可能性。

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