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给体-受体聚合物的设计导向自组装

Design directed self-assembly of donor-acceptor polymers.

作者信息

Marszalek Tomasz, Li Mengmeng, Pisula Wojciech

机构信息

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

Chem Commun (Camb). 2016 Sep 21;52(73):10938-47. doi: 10.1039/c6cc04523e. Epub 2016 Jul 21.

Abstract

Donor-acceptor polymers with an alternating array of donor and acceptor moieties have gained particular attention during recent years as active components of organic electronics. By implementation of suitable subunits within the conjugated backbone, these polymers can be made either electron-deficient or -rich. Additionally, their band gap and light absorption can be precisely tuned for improved light-harvesting in solar cells. On the other hand, the polymer design can also be modified to encode the desired supramolecular self-assembly in the solid-state that is essential for an unhindered transport of charge carriers. This review focuses on three major factors playing a role in the assembly of donor-acceptor polymers on surfaces which are (1) nature, geometry and substitution position of solubilizing alkyl side chains, (2) shape of the conjugated polymer defined by the backbone curvature, and (3) molecular weight which determines the conjugation length of the polymer. These factors adjust the fine balance between attractive and repulsive forces and ensure a close polymer packing important for an efficient charge hopping between neighboring chains. On the microscopic scale, an appropriate domain formation with a low density of structural defects in the solution deposited thin film is crucial for the charge transport. The charge carrier transport through such thin films is characterized by field-effect transistors as basic electronic elements.

摘要

近年来,具有供体和受体部分交替排列的供体-受体聚合物作为有机电子学的活性成分受到了特别关注。通过在共轭主链中引入合适的亚基,可以使这些聚合物具有缺电子或富电子特性。此外,它们的带隙和光吸收可以精确调节,以改善太阳能电池中的光捕获。另一方面,聚合物设计也可以进行修改,以在固态中编码所需的超分子自组装,这对于电荷载流子的无障碍传输至关重要。本综述重点关注在表面上供体-受体聚合物组装中起作用的三个主要因素,即(1) 可溶解烷基侧链的性质、几何形状和取代位置,(2) 由主链曲率定义的共轭聚合物的形状,以及(3) 决定聚合物共轭长度的分子量。这些因素调节吸引力和排斥力之间的精细平衡,并确保聚合物紧密堆积,这对于相邻链之间有效的电荷跳跃很重要。在微观尺度上,溶液沉积薄膜中形成具有低密度结构缺陷的适当畴对于电荷传输至关重要。通过这种薄膜的电荷载流子传输以场效应晶体管作为基本电子元件来表征。

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