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Surface Modification of γ-Al(2)O(3) Nanoparticles Using Conductive Polyaniline Doped by Dodecylbenzene Sulfonic Acid

In this study, electrically conductive PANDB/γ-Al(2)O(3) core–shell nanocomposites were synthesized by surface modification of γ-Al(2)O(3) nanoparticles using polyaniline doped with dodecylbenzene sulfonic acid. The PANDB/γ-Al(2)O(3) core–shell nanocomposites were synthesized by in situ polymerizati...

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Detalles Bibliográficos
Autores principales: Chen, Cheng-Ho, Lin, Ying-Chen, Lin, Hung-Mao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182910/
https://www.ncbi.nlm.nih.gov/pubmed/35683907
http://dx.doi.org/10.3390/polym14112232
Descripción
Sumario:In this study, electrically conductive PANDB/γ-Al(2)O(3) core–shell nanocomposites were synthesized by surface modification of γ-Al(2)O(3) nanoparticles using polyaniline doped with dodecylbenzene sulfonic acid. The PANDB/γ-Al(2)O(3) core–shell nanocomposites were synthesized by in situ polymerization. Pure PANDB and the PANDB/γ-Al(2)O(3) core–shell nanocomposites were characterized using Fourier transform infrared spectroscopy, ultraviolet–visible spectroscopy, transmission electron microscopy, field emission scanning electron microscopy, and measurement of a four-point probe. The conductivity of the PANDB/γ-Al(2)O(3) core–shell nanocomposite was about 0.72 S/cm when the weight ratio of aniline/γ-Al(2)O(3) was 3/1. The results showed that the conductivity of the PANDB/γ-Al(2)O(3) core–shell nanocomposite decreased with increasing amounts of γ-Al(2)O(3) nanoparticles. The transmission electron microscopy results indicated that the γ-Al(2)O(3) nanoparticles were thoroughly coated with PANDB to form a core–shell structure. Transmission electron microscopy and field emission scanning electron microscopy images of the conductive PANDB/γ-Al(2)O(3) core–shell nanocomposites also showed that the thickness of the PANDB layer decreased as the amount of γ-Al(2)O(3) was increased.