Cargando…

Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage

Porous TiO(2)-doped polyaniline and polyaniline nanocomposite fibers prepared by the in situ polymerization technique using anionic surfactant in an ice bath were studied. The prepared nanocomposites were characterized by FTIR spectroscopy and XRD patterns for structural analysis. The surface morpho...

Descripción completa

Detalles Bibliográficos
Autores principales: Badi, Nacer, Roy, Aashis S., Al-Aoh, Hatem A., Motawea, Mohamed S., Alghamdi, Saleh A., M. Alsharari, Abdulrhman, Albaqami, Abdulrahman S., Ignatiev, Alex
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10610601/
https://www.ncbi.nlm.nih.gov/pubmed/37896429
http://dx.doi.org/10.3390/polym15204186
_version_ 1785128295213301760
author Badi, Nacer
Roy, Aashis S.
Al-Aoh, Hatem A.
Motawea, Mohamed S.
Alghamdi, Saleh A.
M. Alsharari, Abdulrhman
Albaqami, Abdulrahman S.
Ignatiev, Alex
author_facet Badi, Nacer
Roy, Aashis S.
Al-Aoh, Hatem A.
Motawea, Mohamed S.
Alghamdi, Saleh A.
M. Alsharari, Abdulrhman
Albaqami, Abdulrahman S.
Ignatiev, Alex
author_sort Badi, Nacer
collection PubMed
description Porous TiO(2)-doped polyaniline and polyaniline nanocomposite fibers prepared by the in situ polymerization technique using anionic surfactant in an ice bath were studied. The prepared nanocomposites were characterized by FTIR spectroscopy and XRD patterns for structural analysis. The surface morphology of the polyaniline and its nanocomposites was examined using SEM images. DC conductivity shows the three levels of conductivity inherent in a semiconductor. Among the nanocomposites, the maximum DC conductivity is 5.6 S/cm for 3 wt.% polyaniline-TiO(2) nanocomposite. Cyclic voltammetry shows the properties of PANI due to the redox peaks of 0.93 V and 0.24 V. Both peaks are due to the redox transition of PANI from the semiconductor to the conductive state. The hydrogen absorption capacity is approximately 4.5 wt.%, but at 60 °C the capacity doubles to approximately 7.3 wt.%. Conversely, 3 wt.% PANI—TiO(2) nanocomposites have a high absorption capacity of 10.4 wt.% compared to other nanocomposites. An overall desorption capacity of 10.4 wt.% reduced to 96% was found for 3 wt.% TiO(2)-doped PANI nanocomposites.
format Online
Article
Text
id pubmed-10610601
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106106012023-10-28 Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage Badi, Nacer Roy, Aashis S. Al-Aoh, Hatem A. Motawea, Mohamed S. Alghamdi, Saleh A. M. Alsharari, Abdulrhman Albaqami, Abdulrahman S. Ignatiev, Alex Polymers (Basel) Article Porous TiO(2)-doped polyaniline and polyaniline nanocomposite fibers prepared by the in situ polymerization technique using anionic surfactant in an ice bath were studied. The prepared nanocomposites were characterized by FTIR spectroscopy and XRD patterns for structural analysis. The surface morphology of the polyaniline and its nanocomposites was examined using SEM images. DC conductivity shows the three levels of conductivity inherent in a semiconductor. Among the nanocomposites, the maximum DC conductivity is 5.6 S/cm for 3 wt.% polyaniline-TiO(2) nanocomposite. Cyclic voltammetry shows the properties of PANI due to the redox peaks of 0.93 V and 0.24 V. Both peaks are due to the redox transition of PANI from the semiconductor to the conductive state. The hydrogen absorption capacity is approximately 4.5 wt.%, but at 60 °C the capacity doubles to approximately 7.3 wt.%. Conversely, 3 wt.% PANI—TiO(2) nanocomposites have a high absorption capacity of 10.4 wt.% compared to other nanocomposites. An overall desorption capacity of 10.4 wt.% reduced to 96% was found for 3 wt.% TiO(2)-doped PANI nanocomposites. MDPI 2023-10-22 /pmc/articles/PMC10610601/ /pubmed/37896429 http://dx.doi.org/10.3390/polym15204186 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Badi, Nacer
Roy, Aashis S.
Al-Aoh, Hatem A.
Motawea, Mohamed S.
Alghamdi, Saleh A.
M. Alsharari, Abdulrhman
Albaqami, Abdulrahman S.
Ignatiev, Alex
Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title_full Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title_fullStr Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title_full_unstemmed Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title_short Enhanced and Proficient Soft Template Array of Polyaniline—TiO(2) Nanocomposites Fibers Prepared Using Anionic Surfactant for Fuel Cell Hydrogen Storage
title_sort enhanced and proficient soft template array of polyaniline—tio(2) nanocomposites fibers prepared using anionic surfactant for fuel cell hydrogen storage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10610601/
https://www.ncbi.nlm.nih.gov/pubmed/37896429
http://dx.doi.org/10.3390/polym15204186
work_keys_str_mv AT badinacer enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT royaashiss enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT alaohhatema enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT motaweamohameds enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT alghamdisaleha enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT malsharariabdulrhman enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT albaqamiabdulrahmans enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage
AT ignatievalex enhancedandproficientsofttemplatearrayofpolyanilinetio2nanocompositesfiberspreparedusinganionicsurfactantforfuelcellhydrogenstorage