Chromaticity of poly( o -toluidine) matrix enhanced by anion-exchange mechanism

Ahmed, S. M. Chromaticity of poly( o -toluidine) matrix enhanced by anion-exchange mechanism Chemical Papers, Vol.61, No. 6, 2007, 464-471

Document type: Článok z časopisu / Journal Article
Collection: Chemical papers  

Author(s) Ahmed, S. M.
Title Chromaticity of poly( o -toluidine) matrix enhanced by anion-exchange mechanism
Journal name Chemical Papers
Publication date 2007
Year available 2007
Volume number 61
Issue number 6
ISSN 0366-6352
Start page 464
End page 471
Place of publication Poland
Publisher Versita
Collection year 2007
Language english
Subject 250000 Chemical Sciences
Abstract/Summary The incorporation of 9,10-anthraquinone-1,5-disulfonate (AQS2) into the protonated form of poly(o-toluidine) (POT), produced by oxidative polymerization of the cationic form of the monomer or by doping the basic form (POT-EB) by anion-exchange has been studied by FTIR and UV-VIS spectroscopy and mass spectrometry. The presence of sulfur and the absence of chlorine proven by elemental analysis of the polymer product confirmed the substitution of the chloride anion with AQS2 in the matrix. Molecular mechanics (MM+) calculations suggest that the optimal geometric structure (OMG) of AQS2-doped POT is at least three (3.92) times more stable than that of the parent chloride-doped POT (HCl-doped POT). The increase of the absorbance at about 840 nm associated with the increasing concentration of AQS2 revealed the insertion of AQS2 into the POT chain. This observation could be explained by the diffusion of AQS2 in the polymer chain. Kinetic parameters of the oxidative polymerization of the cationic form of o-toluidine (o-T-HClO4) in the presence of different amounts of AQS2 were deduced on the basis of absorbance variations. The results of computer-oriented kinetic analysis indicate that the rate-controlling step of the o-T polymerization is governed by the Ginstling-Bronstein equation representing the three-dimensional diffusion (D4). Activation parameters of the oxidative polymerization of protonated o-T in the presence of varying amount of AQS2 were computed and discussed.
 
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