Modulation of PEDOT properties via cobalt ferrite nanoparticles: morphology, conjugation length, doping level, structure, and electrical conductivity

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Main Authors: Paciaroni, Gabriel, Castro, María Ana, Acha, Carlos, Antonel, Paula Soledad
Format: Preprint
Published: 2025
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author Paciaroni, Gabriel
Castro, María Ana
Acha, Carlos
Antonel, Paula Soledad
author_facet Paciaroni, Gabriel
Castro, María Ana
Acha, Carlos
Antonel, Paula Soledad
contents Composite materials based on Poly(3,4-ethylenedioxythiophene) (PEDOT) and CoFe$_2$O$_4$ magnetic nanoparticles (NP) were synthesized by chemical oxidative polymerization with varying monomer and surfactant (DBSA) concentrations, and were compared to PEDOT samples synthesized without NP. Electrical conductivity measurements were performed, which revealed that the composites are more conductive than the pure PEDOT samples, with this effect depending on EDOT and DBSA contents. Characterizations by SEM and TEM microscopies, UV-Vis, FTIR and Raman spectroscopies, X-ray diffraction and dynamic light scattering were carried out in order to associate the morphology and structure of these materials to their electrical conductivity, and to explain how EDOT and DBSA concentrations, and also the presence of NP, affects those properties. It was found that the NP play a significant role in the polymerization of EDOT, influencing the formation and arrangement of polymer chains, as well as their conjugation length, oxidation state, and resonant structures. These effects are also dependent on the DBSA content. To describe the conductivity of the composites, a two-phase model based on general effective media theory was introduced. The analysis revealed that, at low reactant concentrations, the NP increase the conductivity of the adjacent PEDOT by over two orders of magnitude.
format Preprint
id arxiv_https___arxiv_org_abs_2507_07849
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modulation of PEDOT properties via cobalt ferrite nanoparticles: morphology, conjugation length, doping level, structure, and electrical conductivity
Paciaroni, Gabriel
Castro, María Ana
Acha, Carlos
Antonel, Paula Soledad
Materials Science
Applied Physics
Composite materials based on Poly(3,4-ethylenedioxythiophene) (PEDOT) and CoFe$_2$O$_4$ magnetic nanoparticles (NP) were synthesized by chemical oxidative polymerization with varying monomer and surfactant (DBSA) concentrations, and were compared to PEDOT samples synthesized without NP. Electrical conductivity measurements were performed, which revealed that the composites are more conductive than the pure PEDOT samples, with this effect depending on EDOT and DBSA contents. Characterizations by SEM and TEM microscopies, UV-Vis, FTIR and Raman spectroscopies, X-ray diffraction and dynamic light scattering were carried out in order to associate the morphology and structure of these materials to their electrical conductivity, and to explain how EDOT and DBSA concentrations, and also the presence of NP, affects those properties. It was found that the NP play a significant role in the polymerization of EDOT, influencing the formation and arrangement of polymer chains, as well as their conjugation length, oxidation state, and resonant structures. These effects are also dependent on the DBSA content. To describe the conductivity of the composites, a two-phase model based on general effective media theory was introduced. The analysis revealed that, at low reactant concentrations, the NP increase the conductivity of the adjacent PEDOT by over two orders of magnitude.
title Modulation of PEDOT properties via cobalt ferrite nanoparticles: morphology, conjugation length, doping level, structure, and electrical conductivity
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2507.07849