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Impact of Polystyrene Oligomer Side Chains on Naphthalene Diimide-Bithiophene Polymers as n-Type Semiconductors for Organic Field-Effect Transistors

机译:聚苯乙烯低聚物侧链对作为有机场效应晶体管的n型半导体的萘二酰亚胺-联噻吩聚合物的影响

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摘要

A series of naphthalene diimide-based conjugated polymers are prepared with various molar percentage of low molecular weight polystyrene (PS) oligomer of narrow polydispersity as the side chain. The PS side chains are incorporated through preparation of a macromonomer by chain termination of living anionic polymerization. The effects of the PS side chains amount (0-20 mol%) versus overall sidechain on the electrical properties of the resulting polymers as n-type polymer semiconductors in field-effect transistors are investigated. We observe that all the studied polymers show similarly high electron mobility (approximate to 0.2 cm(2) V-1 s(-1)). Importantly, the polymers with high PS side chain content (20 mol%) show a significantly improved device stability under ambient conditions, when compared to the polymers at lower PS content (0-10 mol%). By comparing this observation to the physical blending of the conjugated polymer with PS, we attribute the improved stability to the covalently attached PS side chains potentially serving as a molecular encapsulating layer around the conjugated polymer backbone, rendering it less susceptible to electron traps such as oxygen and water molecules.
机译:制备了一系列基于萘二酰亚胺的共轭聚合物,其具有不同摩尔百分数的窄分散性的低分子量聚苯乙烯(PS)低聚物作为侧链。通过侧链活性阴离子聚合终止大分子单体的制备来引入PS侧链。研究了PS侧链数量(0-20 mol%)相对于整个侧链对作为场效应晶体管中n型聚合物半导体的所得聚合物电学性能的影响。我们观察到所有研究的聚合物都显示出类似的高电子迁移率(约0.2 cm(2)V-1 s(-1))。重要的是,与较低PS含量(0-10 mol%)的聚合物相比,具有较高PS侧链含量(20 mol%)的聚合物在环境条件下显示出显着改善的器件稳定性。通过将该观察结果与共轭聚合物与PS的物理共混进行比较,我们将改进的稳定性归因于共价连接的PS侧链,该PS侧链可能充当共轭聚合物主链周围的分子封装层,从而使其对电子陷阱(例如氧气)的敏感性降低和水分子。

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