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Integrated circuits based on conjugated polymer monolayer

机译:基于共轭聚合物单层的集成电路

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摘要

It is still a great challenge to fabricate conjugated polymer monolayer field-effect transistors (PoM-FETs) due to intricate crystallization and film formation of conjugated polymers. Here we demonstrate PoM-FETs based on a single monolayer of a conjugated polymer. The resulting PoM-FETs are highly reproducible and exhibit charge carrier mobilities reaching 3 cm2 V−1 s−1. The high performance is attributed to the strong interactions of the polymer chains present already in solution leading to pronounced edge-on packing and well-defined microstructure in the monolayer. The high reproducibility enables the integration of discrete unipolar PoM-FETs into inverters and ring oscillators. Real logic functionality has been demonstrated by constructing a 15-bit code generator in which hundreds of self-assembled PoM-FETs are addressed simultaneously. Our results provide the state-of-the-art example of integrated circuits based on a conjugated polymer monolayer, opening prospective pathways for bottom-up organic electronics.
机译:由于共轭聚合物的复杂结晶和成膜,制造共轭聚合物单层场效应晶体管(PoM-FET)仍然是一个巨大的挑战。在这里,我们演示了基于单层共轭聚合物的PoM-FET。所得的PoM-FET具有很高的重现性,并且电荷载流子迁移率达到3 cm 2 V -1 s -1 。高性能归因于溶液中已经存在的聚合物链之间的强相互作用,从而导致单层中明显的边缘堆积和良好定义的微观结构。高再现性使离散单极PoM-FET集成到逆变器和环形振荡器中。通过构建一个15位代码生成器已经证明了真实的逻辑功能,其中同时寻址了数百个自组装的PoM-FET。我们的结果提供了基于共轭聚合物单层的集成电路的最新示例,为自下而上的有机电子学打开了可能的途径。

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