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半导体聚合物球晶——从基础到聚合物电子学。

Semiconducting Polymer Spherulites-From Fundamentals to Polymer Electronics.

机构信息

University of Stuttgart, Pfaffenwaldring 55,, 70569, Stuttgart, Germany.

出版信息

Macromol Rapid Commun. 2019 Jan;40(1):e1800601. doi: 10.1002/marc.201800601. Epub 2018 Nov 16.

Abstract

The control of the morphology of semiconducting semicrystalline polymers is crucial to the performance of various electronic devices. Among other superstructures in semicrystalline polymers, spherulites stand out for various reasons. They are highly ordered, relatively easy to grow, and their underlying molecular structure provides anisotropic optical and electronic properties of the resulting polymeric material. In this feature article, a short overview of classical crystallization theory is given as well as a brief introduction to spherulites as supermolecular structures. The article then focuses on semicrystalline polymers with semiconducting properties. From classical melt crystallization toward solvent vapor annealing, different strategies of growing spherulites of these types of polymers are presented and examples of the corresponding polymers and their resulting morphology are given. Eventually, the potential application of spherulitic thin films in organic electronics such as field-effect transistors is demonstrated. Conductivity and mobility measurements are shown, particularly focusing on the anisotropy of the latter.

摘要

控制半导体半晶聚合物的形态对于各种电子设备的性能至关重要。在半晶聚合物的其他超结构中,球晶因其各种原因而引人注目。它们高度有序,相对容易生长,其基础分子结构为所得聚合物材料提供各向异性的光学和电子性质。在这篇专题文章中,简要概述了经典结晶理论,并简要介绍了作为超分子结构的球晶。然后,文章重点介绍了具有半导体性质的半晶聚合物。从经典的熔体结晶到溶剂蒸气退火,介绍了这些类型聚合物球晶生长的不同策略,并给出了相应聚合物及其所得形态的示例。最后,展示了球晶薄膜在有机电子学(如场效应晶体管)中的潜在应用。展示了电导率和迁移率测量结果,特别关注后者的各向异性。

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