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Tunable Charge Transport Using Supramolecular Self-Assembly of Nanostructured Crystalline Block Copolymers

机译:使用纳米结构结晶嵌段共聚物的超分子自组装进行可调节的电荷传输

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摘要

Electronically functionalized block copolymers, combining covalently linked p-type and n-type blocks, show switching behavior of charge transport in organic field effect transistors (OFETs). The electronically active subunits self-assemble into continuous microdomains in a nanoscale regime, thereby forming percolation channels for holes or electrons or both depending on the composition and processing conditions. Here, we establish a charge transport morphology relation for donor acceptor block copolymers with two crystalline blocks. The n-type and p-type blocks self-assemble into two-dimensional lattices of pi-pi stacks and main chain polymer lamellae, respectively, over El broad composition range. Controlling the crystallization preferences of the two blocks by thermal annealing allows controlling the OFET polarity. Depending on the block ratio, the charge transport can be tuned from p-type to n-type or p-type to ambipolar, respectively. The impact of nanostructured phase separation Is further delineated by X-ray diffraction, time-resolved spectroscopy, and scanning electron microscopy studies.
机译:电子功能化的嵌段共聚物结合了共价连接的p型和n型嵌段,在有机场效应晶体管(OFET)中显示出电荷传输的开关行为。电子活性亚基在纳米尺度下自组装成连续的微区,从而根据成分和加工条件形成用于空穴或电子或两者的渗透通道。在这里,我们建立了具有两个晶体嵌段的供体受体嵌段共聚物的电荷传输形态关系。在El广泛的组成范围内,n型和p型嵌段分别自组装为pi-pi叠层和主链聚合物薄片的二维晶格。通过热退火控制两个嵌段的结晶偏好允许控制OFET极性。取决于阻挡比,可以将电荷传输分别从p型调整为n型,或者将p型调整为双极性。 X射线衍射,时间分辨光谱和扫描电子显微镜研究进一步描述了纳米结构相分离的影响。

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