Brush-like Polyaniline with Optical and Electroactive Properties at Neutral pH and High Temperature

In this research, a brush-like polyaniline (poly(2-acrylamide-2-methyl-1-propanesulfonate)-<i>g</i>-polyaniline)-<i>b</i>-poly(<i>N</i>-vinylcarbazole) (BL PAni) was developed as a strategy to overcome the limited processability and dedoping above pH 4 of conventi...

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Bibliographic Details
Main Authors: Alain Salvador Conejo-Dávila, Carlos Rafael Casas-Soto, Eider Pedro Aparicio-Martínez, David Chávez-Flores, Víctor Hugo Ramos-Sánchez, Rocio Berenice Dominguez, Velia Carolina Osuna, Anayansi Estrada-Monje, Alejandro Vega-Rios, Erasto Armando Zaragoza-Contreras
Format: Article
Language:English
Published: MDPI AG 2022-07-01
Series:International Journal of Molecular Sciences
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Online Access:https://www.mdpi.com/1422-0067/23/15/8085
Description
Summary:In this research, a brush-like polyaniline (poly(2-acrylamide-2-methyl-1-propanesulfonate)-<i>g</i>-polyaniline)-<i>b</i>-poly(<i>N</i>-vinylcarbazole) (BL PAni) was developed as a strategy to overcome the limited processability and dedoping above pH 4 of conventional polyaniline (PAni). For the BL PAni synthesis, RAFT polymerization (homopolymer), RAFT-mediated surfactant-free emulsion polymerization (block copolymer), and interfacial oxidative polymerization were applied to graft the PAni chains. NMR and FT-IR spectroscopies were performed to confirm the structural elucidation of the reaction pathways, while the thermal properties were analyzed by TGA and DSC. Notably, the BL PAni presents absorption throughout the visible region and up to the near-infrared, showing dedoping resistance at up to 80 °C and at a neutral pH. The absorption range of the BL PAni, block copolymer, and homopolymer were studied by UV–Vis spectroscopy in solid-state and dispersion/solution, highlighting BL PAni and poly(anilinium 2-acrylamide-2-methyl-1-propanesulfonate)-<i>b</i>-poly(<i>N</i>-vinylcarbazole) (PAAMP-<i>b</i>-PVK) due to the π-stacking between the anilinium and carbazole groups. The cyclic voltammetry confirmed the persistence of electroactivity at a pH near 7.
ISSN:1661-6596
1422-0067