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Synthesis and characterization of poly (indene‐co‐pyrrole) nanofibers
Author(s) -
Goel Shubhra,
Mazumdar Nasreen A.,
Gupta Alka
Publication year - 2010
Publication title -
polymers for advanced technologies
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.61
H-Index - 90
eISSN - 1099-1581
pISSN - 1042-7147
DOI - 10.1002/pat.1516
Subject(s) - materials science , copolymer , nanofiber , polypyrrole , fourier transform infrared spectroscopy , polymerization , thermal stability , transmission electron microscopy , indene , chemical engineering , polymer chemistry , scanning electron microscope , pyrrole , polymer , nanostructure , nanotechnology , composite material , organic chemistry , chemistry , engineering
Abstract Nanofibers of poly (indene‐co‐pyrrole) (CInPy) have been synthesized, using a facile chemical oxidative polymerization reaction. The effect of copolymerization was examined in view of the individually synthesized homopolymer nanostructures of polyindene (PIn) and polypyrrole (PPy). Morphological details of CInPy, studied using scanning electron microscopy (SEM) and transmission electron microscopy, (TEM) reveal the appearance of dense cottony mess, comprising of fine fibers with an average diameter of 5–10 nm. Chemical structural analysis of CInPy, conducted using ultraviolet‐visible (UV‐Vis), Fourier transform infrared (FTIR), and nuclear magnetic resonance (NMR) spectroscopic techniques, reveals that both PIn and PPy are involved in the formation of copolymer organization. Fluorescence properties of nanosized copolymer are observed in the blue region, with emission λ max placed at 395 nm. Conductivity of copolymer nanofibers (2.4 × 10 −3  S/cm) is consistent with the morphology and thermal stability properties of integral homo‐polymers. Improved thermal stability and processability along with the enhanced optical and electrical properties of copolymer nanostructures outfit it as a better promising material in optoelectronic and light emitting nanodevices, with reference to nanosized PIn and PPy. Copyright © 2009 John Wiley & Sons, Ltd.

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