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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Benzotriazole-Containing Planar Conjugated Polymers with Noncovalent Conformational Locks for Thermally Stable and Efficient Polymer Field-Effect Transistors
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Benzotriazole-Containing Planar Conjugated Polymers with Noncovalent Conformational Locks for Thermally Stable and Efficient Polymer Field-Effect Transistors

机译:具有非共价构象锁的含苯并三唑的平面共轭聚合物,用于热稳定高效的聚合物场效应晶体管

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摘要

We report a series of benzotriazole-based semicrystal- line π-conjugated polymers with noncovalent conformational locks for applications in polymer field-effect transistors. The benzotriazole moiety is a versatile electron-deficient building block that offers two chemically functionalizable sites, 2(N) and 5, 6(C) positions, allowing easy modulation of the solution processability and electronic structures of the resulting polymers. Fluorine or alkoxy substituents were introduced to the benzotriazole unit to enhance the molecular ordering through intra- and intermolecular F···S, F··· H—C, C—F···π_F, or S···O attractive interactions. The fluorinated polymer (PTBTz-F) showed remarkably enhanced hole mobility (μ_h = 1.9 cmV(V·s), on/off ratio = 8 X 10~7) upon thermal annealing at 305 °C, compared to the unsubstituted one (PTBTz) (μ_h = 7.0 X 10~3 cm~2/(V·s), on/off ratio = 3X 10~6). Alkoxy unit substitution (PTBTz-OR) also improved the carrier mobility up to 0.019 cm2/(V-s) with an on/off ratio of 4X 10~5. Fluorine or alkoxy substitution induced tight interchain ordering with edge-on orientation, as confirmed by X-ray diffraction measurements. In particular, fluorinated PTBTz-F showed high thermal stability (T_d 453 °C) and the remarkable device characteristics with deep frontier orbital levels.
机译:我们报告了一系列具有非共价构象锁的基于苯并三唑的半结晶线π共轭聚合物,用于聚合物场效应晶体管。苯并三唑部分是一种通用的缺电子结构单元,提供两个化学官能化位点2(N)和5、6(C)位置,可轻松调节溶液的可加工性和所得聚合物的电子结构。将氟或烷氧基取代基引入苯并三唑单元中,以通过分子内和分子间F··S,F··HC,CF···π_F或S··O吸引相互作用来增强分子有序性。与未取代的聚合物(PTBTz)相比,在305°C的温度下进行退火时,氟化聚合物(PTBTz-F)的空穴迁移率显着提高(μ_h= 1.9 cmV(V·s),开/关比= 8 X 10〜7)。 )(μ_h= 7.0 X 10〜3 cm〜2 /(V·s),开/关比= 3X 10〜6)。烷氧基单元取代(PTBTz-OR)还将载流子迁移率提高至0.019 cm2 /(V-s),开/关比为4X 10〜5。 X射线衍射测量结果证实,氟或烷氧基取代可诱导边沿取向的紧密链间排列。尤其是,氟化的PTBTz-F表现出高的热稳定性(T_d 453°C)和卓越的器件特性,具有较深的边界轨道水平。

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