Donor-Acceptor-Based Organic Polymer Semiconductor Materials to Achieve High Hole Mobility in Organic Field-Effect Transistors

Author:

Ren Shiwei1ORCID,Wang Zhuoer2,Zhang Wenqing3,Ding Yubing1,Yi Zhengran1

Affiliation:

1. Zhuhai-Fudan Innovation Research Institute, Hengqin 519000, China

2. Faculty of Chemistry and Chemical Engineering, Shandong University, Jinan 250101, China

3. Key Laboratory of Organic Solids, National Chemical Research Institute of the Chinese Academy of Sciences, Beijing 100190, China

Abstract

Organic polymer semiconductor materials are conveniently tuned to energy levels because of their good chemically modifiable properties, thus enhancing their carrier transport capabilities. Here, we have designed and prepared a polymer with a donor-acceptor structure and tested its potential as a p-type material for organic field-effect transistor (OFET) applications using a solution-processing method. The conjugated polymers, obtained via the polymerization of the two monomers relying on the Stille coupling reaction, possess extremely high molecular weights and thermodynamic stability. Theoretical-based calculations show that PDPP-2S-Se has superior planarity, which is favorable for carrier transport within the main chain. Photophysical and electrochemical measurements systematically investigated the properties of the material and the energy levels with respect to the theoretical values. The maximum hole mobility of the PDPP-2S-Se-based OFET device is 0.59 cm2 V−1 s−1, which makes it a useful material for potential organic electronics applications.

Funder

China Post-doctoral Science Foundation of special funding

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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