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二维相干电荷输运在高度有序的导电聚合物中通过固态扩散掺杂。

2D coherent charge transport in highly ordered conducting polymers doped by solid state diffusion.

机构信息

Cavendish Laboratory, University of Cambridge, J. J. Thomson Avenue, Cambridge CB3 0HE, UK.

Department of Advanced Materials Science, Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa 277-8561, Chiba, Japan.

出版信息

Nat Mater. 2016 Aug;15(8):896-902. doi: 10.1038/nmat4634. Epub 2016 May 9.

Abstract

Doping is one of the most important methods to control charge carrier concentration in semiconductors. Ideally, the introduction of dopants should not perturb the ordered microstructure of the semiconducting host. In some systems, such as modulation-doped inorganic semiconductors or molecular charge transfer crystals, this can be achieved by spatially separating the dopants from the charge transport pathways. However, in conducting polymers, dopants tend to be randomly distributed within the conjugated polymer, and as a result the transport properties are strongly affected by the resulting structural and electronic disorder. Here, we show that in the highly ordered lamellar microstructure of a regioregular thiophene-based conjugated polymer, a small-molecule p-type dopant can be incorporated by solid state diffusion into the layers of solubilizing side chains without disrupting the conjugated layers. In contrast to more disordered systems, this allows us to observe coherent, free-electron-like charge transport properties, including a nearly ideal Hall effect in a wide temperature range, a positive magnetoconductance due to weak localization and the Pauli paramagnetic spin susceptibility.

摘要

掺杂是控制半导体中电荷载流子浓度的最重要方法之一。理想情况下,掺杂剂的引入不应破坏半导体宿主的有序微结构。在某些系统中,例如调制掺杂的无机半导体或分子电荷转移晶体,可以通过将掺杂剂与电荷传输途径空间分离来实现这一点。然而,在导电聚合物中,掺杂剂往往在共轭聚合物内随机分布,因此传输性质受到由此产生的结构和电子无序的强烈影响。在这里,我们表明,在一个具有高度有序层状微结构的基于噻吩的规正共轭聚合物中,小分子 p 型掺杂剂可以通过固态扩散进入可溶性侧链的层中,而不会破坏共轭层。与更无序的系统相比,这使我们能够观察到相干的、自由电子样的电荷输运性质,包括在很宽的温度范围内几乎理想的霍尔效应、由于弱局域化而产生的正磁导率以及泡利顺磁自旋磁化率。

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