| Literature DB >> 30979282 |
Wonseok Cho1, Soeun Im2, Seyul Kim3, Soyeon Kim4, Jung Hyun Kim5.
Abstract
Hydrophobic and comparatively thermally-stable poly(3,4-ethylenedioxythiophene), i.e., poly(styrene sulfonate-co-vinyltrimethoxysilane) (PEDOT:P(SS-co-VTMS)) copolymer was successfully synthesized via the introduction of silane coupling agent into the PSS main chain to form P(SS-co-VTMS) copolymers. PSS and P(SS-co-VMTS) copolymers were successfully synthesized via radical solution polymerization, and PEDOT:P(SS-co-VTMS) was synthesized via Fe⁺-catalyzed oxidative polymerization. The characterization of PEDOT:P(SS-co-VTMS) was performed through an analysis of Fourier transform infrared spectroscopy (FTIR) results, water contact angle and optical images. The electrical properties of conductive PEDOT:P(SS-co-VTMS) thin films were evaluated by studying the influence of the VTMS content on the electrical and physical properties. The conductivity of PEDOT:P(SS-co-VTMS) decreased with an increase in the VTMS content, but was close to that of the PEDOT:PSS, 235.9 S·cm-1. The introduction of VTMS into the PSS copolymer improved the mechanical properties and thermal stability and increased the hydrophobicity. The thermal stability test at a temperature over 240 °C indicated that the sheet resistance of PEDOT:PSS increased by 3,012%. The sheet resistance of PEDOT:P(SS-co-VTMS), on the other hand, only increased by 480%. The stability of PEDOT:P(SS-co-VTMS) was six-times higher than that of the reference PEDOT:PSS.Entities:
Keywords: PEDOT:PSS; PSS copolymer; conducting polymer
Year: 2016 PMID: 30979282 PMCID: PMC6431847 DOI: 10.3390/polym8050189
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1FTIR spectra of PSS and P(SS-co-vinyltrimethoxysilane (VTMS)) copolymers.
Figure 2(a) Optical images of P(SS-co-VTMS) solutions and water contact angle images of PSS and P(SS-co-VTMS) films; (b) VTMS 0 mol%; (c) VTMS 5 mol%; (d) VTMS 10 mol%; (e) VTMS 15 mol%.
Figure 3Conductivity of PEDOT:P(SS-co-VTMS) with DMSO solution treatment.
Figure 4XPS spectra (a) and Raman shift spectra (b) of PEDOT:P(SS-co-VTMS).
Figure 5AFM phase images and topographic images of PEDOT:PSS and PEDOT:P(SS-co-VTMS) films with DMSO solution treatment. (a) PEDOT:P(SS-co-VTMS) 0 mol %; (b) PEDOT:P(SS-co-VTMS) 5 mol %; (c) PEDOT:P(SS-co-VTMS) 10 mol %; (d) PEDOT:P(SS-co-VTMS) 15 mol %.
Figure 6Water contact angle optical images of PEDOT:PSS and PEDOT:P(SS-co-VTMS) films with DMSO solution treatment. (a) PEDOT:P(SS-co-VTMS) 0 mol%; (b) PEDOT:P(SS-co-VTMS) 5 mol%; (c) PEDOT:P(SS-co-VTMS) 10 mol%; (d) PEDOT:P(SS-co-VTMS) 15 mol%.
Figure 7Thermal stability spectra of PEDOT:PSS and PEDOT:P(SS-co-VTMS) with the thermal exposure test.