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One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates

Two heteropolytungstate structures, Keggin (H(3)PW(12)O(40)) and Preyssler (H(14)[NaP(5)W(30)O(110)]), were used to synthesize conductive silver nanoparticle–polyaniline–heteropolytungstate (AgNPs–PAni–HPW) nanocomposites. During the oxidative polymerization of aniline, heteropolyblue was generated...

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Autores principales: Amini, Abbas, Rahimi, Marjan, Nazari, Marziyeh, Cheng, Chun, Samali, Bijan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059952/
https://www.ncbi.nlm.nih.gov/pubmed/35520511
http://dx.doi.org/10.1039/c8ra09029g
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author Amini, Abbas
Rahimi, Marjan
Nazari, Marziyeh
Cheng, Chun
Samali, Bijan
author_facet Amini, Abbas
Rahimi, Marjan
Nazari, Marziyeh
Cheng, Chun
Samali, Bijan
author_sort Amini, Abbas
collection PubMed
description Two heteropolytungstate structures, Keggin (H(3)PW(12)O(40)) and Preyssler (H(14)[NaP(5)W(30)O(110)]), were used to synthesize conductive silver nanoparticle–polyaniline–heteropolytungstate (AgNPs–PAni–HPW) nanocomposites. During the oxidative polymerization of aniline, heteropolyblue was generated and served as the reducing agent to stabilize and distribute AgNPs within “PAni–Keggin” and “PAni–Preyssler” matrixes as well as on their surfaces. The prepared nanocomposites and AgNPs were characterized using UV-visible (UV-Vis) and Fourier-transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), pore size distribution BET, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). UV-Vis results showed different stages of the formation of metal NPs embedded in the polymer–HPW composites, and FT-IR spectra presented characteristic bands of PAni, Keggin and Preyssler anions in the composites confirming no changes in their structures. The presence of AgNPs and an intensely crystalline matrix were confirmed by the XRD pattern. The BET surface areas were found to be 38.426 m(2) g(−1) for “AgNPs–PAni–Keggin” and 29.977 m(2) g(−1) for “AgNPs–PAni–Preyssler” nanocomposites with broad distributions of meso-porous structure for both nanocomposites. TEM and SEM images confirmed that the type of heteropolyacids affected the size of AgNPs. This is the first report that uses Keggin and Preyssler-type heteropolytungstate to synthesize “AgNPs–PAni–HPW” nanocomposites in an ambient condition through a low-cost, facile, one-pot, environmentally friendly and simultaneous in situ oxidative polymerization protocol.
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spelling pubmed-90599522022-05-04 One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates Amini, Abbas Rahimi, Marjan Nazari, Marziyeh Cheng, Chun Samali, Bijan RSC Adv Chemistry Two heteropolytungstate structures, Keggin (H(3)PW(12)O(40)) and Preyssler (H(14)[NaP(5)W(30)O(110)]), were used to synthesize conductive silver nanoparticle–polyaniline–heteropolytungstate (AgNPs–PAni–HPW) nanocomposites. During the oxidative polymerization of aniline, heteropolyblue was generated and served as the reducing agent to stabilize and distribute AgNPs within “PAni–Keggin” and “PAni–Preyssler” matrixes as well as on their surfaces. The prepared nanocomposites and AgNPs were characterized using UV-visible (UV-Vis) and Fourier-transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), pore size distribution BET, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). UV-Vis results showed different stages of the formation of metal NPs embedded in the polymer–HPW composites, and FT-IR spectra presented characteristic bands of PAni, Keggin and Preyssler anions in the composites confirming no changes in their structures. The presence of AgNPs and an intensely crystalline matrix were confirmed by the XRD pattern. The BET surface areas were found to be 38.426 m(2) g(−1) for “AgNPs–PAni–Keggin” and 29.977 m(2) g(−1) for “AgNPs–PAni–Preyssler” nanocomposites with broad distributions of meso-porous structure for both nanocomposites. TEM and SEM images confirmed that the type of heteropolyacids affected the size of AgNPs. This is the first report that uses Keggin and Preyssler-type heteropolytungstate to synthesize “AgNPs–PAni–HPW” nanocomposites in an ambient condition through a low-cost, facile, one-pot, environmentally friendly and simultaneous in situ oxidative polymerization protocol. The Royal Society of Chemistry 2019-01-21 /pmc/articles/PMC9059952/ /pubmed/35520511 http://dx.doi.org/10.1039/c8ra09029g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Amini, Abbas
Rahimi, Marjan
Nazari, Marziyeh
Cheng, Chun
Samali, Bijan
One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title_full One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title_fullStr One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title_full_unstemmed One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title_short One-pot facile simultaneous in situ synthesis of conductive Ag–polyaniline composites using Keggin and Preyssler-type phosphotungstates
title_sort one-pot facile simultaneous in situ synthesis of conductive ag–polyaniline composites using keggin and preyssler-type phosphotungstates
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059952/
https://www.ncbi.nlm.nih.gov/pubmed/35520511
http://dx.doi.org/10.1039/c8ra09029g
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