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Head-to-Tail and Head-to-Head Molecular Chains of Poly( p -Anisidine): Combined Experimental and Theoretical Evaluation.

Authors :
de Oliveira LR
de Souza Gonçalves D
de Souza Carolino A
Facchinatto WM
de Carvalho Menezes D
Dias CO
Colnago LA
Ruiz YL
Ţălu Ş
da Fonseca Filho HD
Chaudhuri P
Campelo PH
Mascarenhas YP
Sanches EA
Source :
Molecules (Basel, Switzerland) [Molecules] 2022 Sep 26; Vol. 27 (19). Date of Electronic Publication: 2022 Sep 26.
Publication Year :
2022

Abstract

Poly( p -anisidine) (PPA) is a polyaniline derivative presenting a methoxy (-OCH <subscript>3</subscript> ) group at the para position of the phenyl ring. Considering the important role of conjugated polymers in novel technological applications, a systematic, combined experimental and theoretical investigation was performed to obtain more insight into the crystallization process of PPA. Conventional oxidative polymerization of p -anisidine monomer was based on a central composite rotational design (CCRD). The effects of the concentration of the monomer, ammonium persulfate (APS), and HCl on the percentage of crystallinity were considered. Several experimental techniques such as X-ray Diffraction (XRD), Scanning Electron Microscopy (SEM), multifractal analysis, Nuclear Magnetic Resonance ( <superscript>13</superscript> C NMR), Fourier-transform Infrared spectroscopy (FTIR), and complex impedance spectroscopy analysis, in addition to Density Functional Theory (DFT), were employed to perform a systematic investigation of PPA. The experimental treatments resulted in different crystal structures with a percentage of crystallinity ranging from (29.2 ± 0.6)% (PPA1 <subscript>HT</subscript> ) to (55.1 ± 0.2)% (PPA16 <subscript>HT-HH</subscript> ). A broad halo in the PPA16 <subscript>HT-HH</subscript> pattern from 2θ = 10.0-30.0° suggested a reduced crystallinity. Needle and globular-particle morphologies were observed in both samples; the needle morphology might have been related to the crystalline contribution. A multifractal analysis showed that the PPA surface became more complex when the crystallinity was reduced. The proposed molecular structures of PPA were supported by the high-resolution <superscript>13</superscript> C NMR results, allowing us to access the percentage of head-to-tail (HT) and head-to-head (HH) molecular structures. When comparing the calculated and experimental FTIR spectra, the most pronounced changes were observed in ν(C-H), ν(N-H), ν(C-O), and ν(C-N-C) due to the influence of counterions on the polymer backbone as well as the different mechanisms of polymerization. Finally, a significant difference in the electrical conductivity was observed in the range of 1.00 × 10 <superscript>-9</superscript> S.cm <superscript>-1</superscript> and 3.90 × 10 <superscript>-14</superscript> S.cm <superscript>-1</superscript> , respectively, for PPA1 <subscript>HT</subscript> and PPA16 <subscript>HT-HH</subscript> .

Details

Language :
English
ISSN :
1420-3049
Volume :
27
Issue :
19
Database :
MEDLINE
Journal :
Molecules (Basel, Switzerland)
Publication Type :
Academic Journal
Accession number :
36234863
Full Text :
https://doi.org/10.3390/molecules27196326