Department of Energy and Materials Engineering, Dongguk University, 30 Pildong-ro, 1-gil, Jung-gu, Seoul, 04620, Republic of Korea.
Center for Nano Science and Technology @PoliMi, Istituto Italiano di Tecnologia, Via Pascoli 70/3, 20133, Milano, Italy.
Adv Mater. 2018 May;30(20):e1705463. doi: 10.1002/adma.201705463. Epub 2018 Mar 27.
Polymer semiconductors have been experiencing a remarkable improvement in electronic and optoelectronic properties, which are largely related to the recent development of a vast library of high-performance, donor-acceptor copolymers showing alternation of chemical moieties with different electronic affinities along their backbones. Such steady improvement is making conjugated polymers even more appealing for large-area and flexible electronic applications, from distributed and portable electronics to healthcare devices, where cost-effective manufacturing, light weight, and ease of integration represent key benefits. Recently, a strong boost to charge carrier mobility in polymer-based field-effect transistors, consistently achieving the range from 1.0 to 10 cm V s for both holes and electrons, has been given by uniaxial backbone alignment of polymers in thin films, inducing strong transport anisotropy and favoring enhanced transport properties along the alignment direction. Herein, an overview on this topic is provided with a focus on the processing-structure-property relationships that enable the controlled and uniform alignment of polymer films over large areas with scalable processes. The key aspects are specific molecular structures, such as planarized backbones with a reduced degree of conformational disorder, solution formulation with controlled aggregation, and deposition techniques inducing suitable directional flow.
聚合物半导体的电子和光电性能得到了显著改善,这在很大程度上与最近发展起来的大量高性能供体-受体共聚物有关,这些共聚物沿其主链交替出现具有不同电子亲和性的化学基团。这种稳定的改进使得共轭聚合物在大面积和柔性电子应用中更具吸引力,从分布式和便携式电子产品到医疗保健设备,其中具有成本效益的制造、重量轻和易于集成是关键优势。最近,通过在薄膜中对聚合物进行单轴主链排列,使聚合物场效应晶体管中的电荷载流子迁移率得到了大幅提高,空穴和电子的迁移率均达到了 1.0 到 10 cm V s 的范围,从而产生了强烈的输运各向异性,并有利于沿着排列方向增强输运性能。本文对此主题进行了综述,重点介绍了在大面积上实现聚合物薄膜可控和均匀排列的加工-结构-性能关系,这些关系可通过可扩展的工艺来实现。关键方面是特定的分子结构,例如具有降低构象无序度的平面化主链、具有受控聚集的溶液配方以及诱导适当定向流动的沉积技术。