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Tuning the nanostructure and molecular orientation of high molecular weight diketopyrrolopyrrole-based polymers for high-performance field-effect transistors

机译:调控高性能场效应晶体管高分子量二酮吡咯吡咯基聚合物的纳米结构和分子取向

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摘要

As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are well suited for applications of next-generation plastic electronics because of their excellent and tunable optoelectronic properties via a rational design of chemical structures. However, it remains a challenge to unravel and eventually influence the correlation between their solution-state aggregation and solid-state microstructure. In this contribution, the solution-state aggregation of high molecular weight PDPP3T is effectively enhanced by solvent selectivity, and a fibril-like nanostructure with short-range and long-range order is generated and tuned in thin films. The predominant role of solvent quality on polymer packing orientation is revealed, with an orientational transition from a face-on to an edge-on texture for the same PDPP3T. The resultant edge-on arranged films lead to a significant improvement in charge transport in transistors, and the field-effect hole mobility reaches 2.12 cm2 V−1 s−1 with a drain current on/off ratio of up to 108. Our findings offer a new strategy for enhancing the device performance of polymer electronic devices.
机译:作为一个通用的一类半导体,diketopyrrolopyrrole(民进党)的共轭聚合物非常适合应用程序的新一代塑料电子产品,因为他们的优秀和可调光电子通过设计合理的化学性质结构。解开,并最终影响的相关性在溶液聚合和固态微观结构。高分子溶液聚合体重PDPP3T有效增强溶剂选择性,fibril-like纳米结构近程和远程和生成订单在薄膜。溶剂在聚合物质量包装取向透露,从一个方向过渡正面侧面纹理相同的PDPP3T。显著改善负责运输在晶体管和场效应的洞迁移率达到2.12厘米2 V−1 s−1排水目前的开/关比率高达108。为提高设备提供一个新的策略聚合物电子设备的性能。

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