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双极小分子:聚合物共混半导体用于溶液处理有机场效应晶体管。

Ambipolar Small-Molecule:Polymer Blend Semiconductors for Solution-Processable Organic Field-Effect Transistors.

机构信息

Research Institute for Solar and Sustainable energies (RISE), Heeger Center for Advanced Materials (HCAM), School of Materials Science and Engineering, Gwangju Institute of Science and Technology (GIST) , Gwangju 500-712, Republic of Korea.

Department of Energy and Materials Engineering, Dongguk University , 30 Pildong-ro, 1-gil, Jung-gu, Seoul 04620, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Jan 25;9(3):2686-2692. doi: 10.1021/acsami.6b12328. Epub 2017 Jan 13.

Abstract

We report on the fabrication of an organic thin-film semiconductor formed using a blend solution of soluble ambipolar small molecules and an insulating polymer binder that exhibits vertical phase separation and uniform film formation. The semiconductor thin films are produced in a single step from a mixture containing a small molecular semiconductor, namely, quinoidal biselenophene (QBS), and a binder polymer, namely, poly(2-vinylnaphthalene) (PVN). Organic field-effect transistors (OFETs) based on QBS/PVN blend semiconductor are then assembled using top-gate/bottom-contact device configuration, which achieve almost four times higher mobility than the neat QBS semiconductor. Depth profile via secondary ion mass spectrometry and atomic force microscopy images indicate that the QBS domains in the films made from the blend are evenly distributed with a smooth morphology at the bottom of the PVN layer. Bias stress test and variable-temperature measurements on QBS-based OFETs reveal that the QBS/PVN blend semiconductor remarkably reduces the number of trap sites at the gate dielectric/semiconductor interface and the activation energy in the transistor channel. This work provides a one-step solution processing technique, which makes use of soluble ambipolar small molecules to form a thin-film semiconductor for application in high-performance OFETs.

摘要

我们报告了使用可溶性双极性小分子和绝缘聚合物粘合剂的共混溶液形成的有机薄膜半导体的制造,该共混溶液表现出垂直相分离和均匀的成膜。半导体薄膜可以通过一步法从包含小分子半导体(即醌式双硒吩(QBS))和粘合剂聚合物(即聚(2-乙烯基萘)(PVN)的混合物中获得。然后使用顶栅/底接触器件结构组装基于 QBS/PVN 共混半导体的有机场效应晶体管(OFET),其迁移率比纯 QBS 半导体高近四倍。通过二次离子质谱和原子力显微镜图像的深度剖析表明,在共混物制成的薄膜中,QBS 域在 PVN 层底部均匀分布,具有光滑的形态。基于 QBS 的 OFET 的偏压应力测试和变温测量表明,QBS/PVN 共混半导体显着减少了栅极电介质/半导体界面处的陷阱数量和晶体管沟道中的活化能。这项工作提供了一种一步法处理技术,该技术利用可溶性双极性小分子形成用于高性能 OFET 的薄膜半导体。

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