| Literature DB >> 35004622 |
Shisong Nie1,2, Zaifang Li1, Yuyuan Yao2, Yingzhi Jin1.
Abstract
PEDOT is the most popularly used conductive polymer due to its high conductivity, good physical and chemical stability, excellent optical transparency, and the capabilities of easy doping and solution processing. Based on the advantages above, PEDOT has been widely used in various devices for energy conversion and storage, and bio-sensing. The synthesis method of PEDOT is very important as it brings different properties which determine its applications. In this mini review, we begin with a brief overview of recent researches in PEDOT. Then, the synthesis methods of PEDOT are summarized in detail, including chemical polymerization, electrochemical polymerization, and transition metal-mediated coupling polymerization. Finally, research directions in acquiring high-quality PEDOT are discussed and proposed.Entities:
Keywords: PEDOT; conducting polymer; conductivity; doping; synthesis method
Year: 2021 PMID: 35004622 PMCID: PMC8738075 DOI: 10.3389/fchem.2021.803509
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
FIGURE1Three kinds of polymerization methods for PEDOT, chemical polymerization, electrochemical polymerization, and transition metal-mediated coupling polymerization. Reproduced with permission (Lock et al., 2006; Wen and Xu, 2017; Jiang et al., 2020).
FIGURE2(A) schematic diagram of oxidative polymerization mechanism of PEDOT; (B,C) PEDOT in-situ solution polymerization process; (D) flow chart of vapor-phase polymerization; (E) schematic diagram of oCVD reactor; (F) a three-electrode device for electrochemical synthesis; (G) PEDOT is obtained by coupling polymerization of transition metals. Reproduced with permission (Ha et al., 2004; Bhattacharyya et al., 2012; Wen and Xu, 2017; Gharahcheshmeh and Gleason, 2018; Jiang et al., 2020).