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Spectroscopic investigations on polypropylene‐carbon nanofiber composites. I. Raman and electron spin resonance spectroscopy
Authors:Mircea Chipara  John R Villarreal  Magdalena Dorina Chipara  Karen Lozano  Alin Cristian Chipara  David J Sellmyer
Institution:1. Department of Physics and Geology, University of Texas Pan American, Edinburg , Texas 78541;2. Department of Chemistry, University of Texas Pan American, Edinburg, Texas 78541;3. Department of Mechanical Engineering, University of Texas Pan American, Edinburg, Texas 78541;4. Department of Physics and Astronomy, University of Nebraska, Lincoln, Nebraska 68588
Abstract:Isotactic polypropylene‐vapor grown carbon nanofiber composites containing various fractions of carbon nanofibers, ranging from 0 to 20 wt %, have been prepared. Raman spectroscopy was used to analyze the effect of the dispersion of carbon nanofibers within polypropylene and the interactions between carbon nanofibers and macromolecular chains. The as‐recorded Raman spectra have been successfully fitted by a linear convolution of Lorentzian lines. Changes of the Raman lines parameters (position, intensity, width, and area) of polypropylene and carbon nanofibers were analyzed in detail. The Raman spectra of the polymeric matrix—at low concentrations of nanofibers—show important modifications that indicate strong interactions between carbon nanofibers and the polymeric matrix reflecting by vibrational dephasing of macromolecular chains. The Raman spectrum of carbon nanofibers is sensitive to the loading with carbon nanofibers, showing changes of the resonance frequencies, amplitudes, and width for both D‐ and G‐bands. Raman data reveals the increase of the disorder, as the concentration of carbon nanofibers is increased. The presence of the typical ESR line assigned to conducting electrons delocalized over carbon nanofibers is confirmed and the presence of a spurious magnetic line due to catalyst's residues is reported. © 2009 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 47: 1644–1652, 2009
Keywords:carbon nanotubes  ESR/EPR  nanocomposites  poly(propylene)  Raman spectroscopy
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