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Experimental evidence that short-range intermolecular aggregation is sufficient for efficient charge transport in conjugated polymers

机译:实验证据表明短程分子间聚集足以在共轭聚合物中进行有效的电荷传输

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摘要

Efficiency, current throughput, and speed of electronic devices are to a great extent dictated by charge carrier mobility. The classic approach to impart high carrier mobility to polymeric semiconductors has often relied on the assumption that extensive order and crystallinity are needed. Recently, however, this assumption has been challenged, because high mobility has been reported for semiconducting polymers that exhibit a surprisingly low degree of order. Here, we show that semiconducting polymers can be confined into weakly ordered fibers within an inert polymer matrix without affecting their charge transport properties. In these conditions, the semiconducting polymer chains are inhibited from attaining long-range order in the π-stacking or alkyl-stacking directions, as demonstrated from the absence of significant X-ray diffraction intensity corresponding to these crystallographic directions, yet still remain extended along the backbone direction and aggregate on a local length scale. As a result, the polymer films maintain high mobility even at very low concentrations. Our findings provide a simple picture that clarifies the role of local order and connectivity of domains.
机译:电子设备的效率,电流通过量和速度在很大程度上取决于载流子迁移率。向聚合物半导体赋予高载流子迁移率的经典方法通常依赖于需要广泛的有序性和结晶性的假设。然而,最近,这一假设受到了挑战,因为据报道,半导体聚合物表现出出乎意料的低序度,因此具有高迁移率。在这里,我们表明半导体聚合物可以被限制在惰性聚合物基体内的弱有序纤维中,而不会影响它们的电荷传输性能。在这些条件下,半导体聚合物链被抑制在π堆积或烷基堆积方向上达到长距离有序,这是由于不存在与这些晶体学方向相对应的显着X射线衍射强度而证明的,但仍然沿骨干方向并在局部长度尺度上聚集。结果,即使在非常低的浓度下,聚合物膜也保持高迁移率。我们的发现提供了一个简单的图片,阐明了本地顺序和域连接的作用。

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