A solid-state synthesis, mechanism, and characterization of high molecular weight poly (3-aminobenzenesulfonic acid) with FeCl3.6H2O as a binary oxidant and dopant
Author:
Funder
university of sistan and Baluchestan
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Organic Chemistry,Polymers and Plastics
Link
http://link.springer.com/article/10.1007/s10965-018-1674-4/fulltext.html
Reference82 articles.
1. Teasdale P R, Spinks G M, Kane-Maguire L A, Wallace G G (2008). Conductive electroactive polymers: intelligent polymer systems. CRC press
2. Freund M S, Deore B A (2007) Self-doped conducting polymers. Wiley
3. Eftekhari A (2011) Nanostructured conductive polymers. Wiley
4. Modarresi-Alam AR, Amirazizi HA, Movahedifar F, Farrokhzadeh A, Asli GR, Nahavandi H (2015) The first report of polymerization and characterization of aniline bearing chiral alkyl group on ring via a covalent bond; poly [(±)-2-(sec-butyl) aniline]. J Mol Struct 1083:17–26
5. Movahedifar F, Modarresi-Alam AR (2016) The effect of initiators and oxidants on the morphology of poly [(±)-2-(sec-butyl) aniline] a chiral bulky substituted polyaniline derivative. Polym Adv Technol 27:131–139
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