Synthesis and Properties of Ionic Polyacetylene Composite from the In-situ Quaternization Polymerization of 2-Ethynylpyridine Using Iron (III) Chloride

Taehyoung Kim, Sung Ho Jin, Jongwook Park, Yeong Soon Gal

Research output: Contribution to journalArticlepeer-review

Abstract

An ionic conjugated polymer-iron (III) chloride composite was prepared via in-situ quaternization polymerization of 2-ethynylpyridine (2EP) using iron (III) chloride. Various instrumental methods revealed that the chemical structure of the resulting conjugated polymer (P2EP)-iron (III) chloride composite has the conjugated backbone system having the designed pyridinium ferric chloride complexes. The polymerization mechanism was assumed to be that the activated triple bond of 2-ethynylpyridinium salt, formed at the first reaction step, is easily susceptible to the step-wise polymerization, followed by the same propagation step that contains the propagating macroanion and monomeric 2-ethynylpyridinium salts. The electro-optical and electrochemical properties of the P2EP-FeCl3 composite were studied. In the UV-visible spectra of P2EP-FeCl3 composite, the absorption maximum values were 480 nm and 533 nm, and the PL maximum value was 598 nm. The cyclic voltammograms of the P2EP-FeCl3 composite exhibited irreversible electrochemical behavior between the oxidation and reduction peaks. The kinetics of the redox process of composites were found to be very close to a diffusion-controlled process from the plot of the oxidation current density versus the scan rate.

Original languageEnglish
Pages (from-to)296-302
Number of pages7
JournalApplied Chemistry for Engineering
Volume35
Issue number4
DOIs
Publication statusPublished - Aug 2024

Bibliographical note

Publisher Copyright:
© 2024, Korean Society of Industrial Engineering Chemistry. All rights reserved.

Keywords

  • 2-ethynylpyridine
  • Conjugated polymer
  • Cyclovoltammogram
  • Iron (III) chloride
  • Photoluminescence

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