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  • Electrochemical copolymerization study of o-toluidine and o-aminophenol by the simultaneous EQCM and in situ FTIR spectroelectrochemistry.

Electrochemical copolymerization study of o-toluidine and o-aminophenol by the simultaneous EQCM and in situ FTIR spectroelectrochemistry.

Talanta (2010-03-02)
Qin Yang, Youyu Zhang, Haitao Li, Yuqin Zhang, Meiling Liu, Jiao Luo, Liang Tan, Hao Tang, Shouzhuo Yao
ABSTRACT

The electrochemical synthesis and characterization of a copolymer, poly(o-toluidine-co-o-aminophenol), were conducted using in situ piezoelectric FTIR spectroelectrochemistry. The monomer feed ratio strongly affects the copolymerization rate and the properties of the copolymer during the electrosynthesis in 0.5M H(2)SO(4) aqueous solution. The effects of scan rate and pH value on the electrochemical activity of the obtained copolymer were also studied. The copolymer synthesized in higher molar ratio of o-toluidine/o-aminophenol exhibited good electrical activity and stability in a broad pH range. The copolymerization mechanisms of o-toluidine and o-aminophenol were deduced. The copolymer formed through the head-to-tail coupling of the two monomers via -NH- groups was a new polymer rather than a mixture of poly(o-toluidine) and poly(o-aminophenol).

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Sigma-Aldrich
o-Toluidine, ≥99%
Sigma-Aldrich
2-Aminophenol, 99%
Sigma-Aldrich
o-Toluidine, 98%
Sigma-Aldrich
o-Toluidine solution, 0.6 M in glacial acetic acid, contains thiourea as stabilizer
Sigma-Aldrich
o-Toluidine, purum p.a., ≥99.5% (GC)