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Recent structural evolution of lactam- and imide-functionalized polymers applied in organic field-effect transistors and organic solar cells

机译:内酰胺和酰亚胺官能化聚合物在有机场效应晶体管和有机太阳能电池中的最近结构演变

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摘要

Organic semiconductor materials, especially donor–acceptor (D–A) polymers, have been increasingly applied in organic optoelectronic devices, such as organic field-effect transistors (OFETs) and organic solar cells (OSCs). Plenty of high-performance OFETs and OSCs have been achieved based on varieties of structurally modified D–A polymers. As the basic building block of D–A polymers, acceptor moieties have drawn much attention. Among the numerous types, lactam- and imide-functionalized electron-deficient building blocks have been widely investigated. In this review, the structural evolution of lactam- or imide-containing acceptors (for instance, diketopyrrolopyrrole, isoindigo, naphthalene diimide, and perylene diimide) is covered and their representative polymers applied in OFETs and OSCs are also discussed, with a focus on the effect of varied structurally modified acceptor moieties on the physicochemical and photoelectrical properties of polymers. Additionally, this review discusses the current issues that need to be settled down and the further development of new types of acceptors. It is hoped that this review could help design new electron-deficient building blocks, find a more valid method to modify already reported acceptor units, and achieve high-performance semiconductor materials eventually.
机译:有机半导体材料,尤其是供体 - 受体(D-A)聚合物,在有机光电器件中越来越多地应用于有机场效应晶体管(OSC)和有机太阳能电池(OSC)。基于结构改性的D-A聚合物的各种,已经实现了大量的高性能和OSC。作为D-A聚合物的基本构建块,受体部分引起了很多关注。在许多类型中,已经广泛研究了内酰胺和酰亚胺官能化的电子缺陷的构建块。在该综述中,覆盖了内酰胺或含有酰亚胺或酰亚胺的受体(例如,二酮吡咯醇,异吲哚,萘二酰亚胺)的结构演变,并且还讨论了在OFET和OSC中应用的代表性聚合物,重点是不同结构改性受体部分对聚合物物理化学和光电性能的影响。此外,这篇评论讨论了当前需要解决的问题以及进一步发展新类型的受体。希望本次审查可以帮助设计新的电子缺陷结构块,找到更有效的方法来修改已报告的受体单元,并最终实现高性能半导体材料。

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