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通过在取向聚乙烯薄膜上外延生长和溶剂蒸汽处理制备的高度各向异性聚(3-己基噻吩)薄膜

Highly Anisotropic P3HT Film Fabricated via Epitaxy on an Oriented Polyethylene Film and Solvent Vapor Treatment.

作者信息

Li Jiali, Xue Meiling, Xue Ning, Li Huihui, Zhang Lei, Ren Zhongjie, Yan Shouke, Sun Xiaoli

机构信息

State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering , Beijing University of Chemical Technology , Beijing 100029 , China.

Key Laboratory of Rubber-Plastics Ministry of Education , Qingdao University of Science & Technology , Qingdao 266042 , China.

出版信息

Langmuir. 2019 Jun 18;35(24):7841-7847. doi: 10.1021/acs.langmuir.9b00402. Epub 2019 May 24.

Abstract

To improve the epitaxial crystallization ability of poly(3-hexylthiophene) (P3HT) on a highly oriented polyethylene (PE) substrate, controlled solvent vapor treatment (CSVT) is employed. The anisotropic structures and related optical properties depend not only on the solvent used to prepare the film but also on the subsequent solvent vapor treatment pressure and time. A highly oriented PE film facilitates the "side-on" chain orientation of P3HT with its c axis parallel to the drawing direction of the PE film. The dichroic ratio (DR) of the P3HT film reflected by UV-vis spectra can reach as high as 7.1, which is much larger than the value treated by thermal annealing. Moreover, the excitation bandwidth W, indicating the effective conjugation length and molecular order, shows significant anisotropic features. Solvent used for solution processing with a high boiling point is more favorable for inducing anisotropic multiscale structures. In particular, the oriented structures lead to obvious anisotropic carrier mobility. The carrier mobility of P3HT after CSVT along the PE molecular chain direction is 7.5 times higher than that measured perpendicular to the PE chain direction. This is of great importance in fabricating anisotropic thin films of conjugated polymeric semiconductors with enhanced performance.

摘要

为了提高聚(3-己基噻吩)(P3HT)在高度取向的聚乙烯(PE)衬底上的外延结晶能力,采用了可控溶剂蒸汽处理(CSVT)。各向异性结构和相关光学性质不仅取决于用于制备薄膜的溶剂,还取决于后续的溶剂蒸汽处理压力和时间。高度取向的PE薄膜有助于P3HT的“侧立”链取向,其c轴平行于PE薄膜的拉伸方向。紫外可见光谱反映的P3HT薄膜的二向色比(DR)可高达7.1,远大于热退火处理的值。此外,表明有效共轭长度和分子有序性的激发带宽W呈现出显著的各向异性特征。用于溶液加工的高沸点溶剂更有利于诱导各向异性的多尺度结构。特别是,取向结构导致明显的各向异性载流子迁移率。CSVT后P3HT沿PE分子链方向的载流子迁移率比垂直于PE链方向测量的值高7.5倍。这对于制备具有增强性能的共轭聚合物半导体各向异性薄膜非常重要。

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