Cargando…

Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane

As a traditional high-temperature proton exchange membrane (HT-PEM), phosphoric acid (PA)-doped polybenzimidazole (PBI) is often subject to severe mechanical strength deterioration owing to the “plasticizing effect” of a large amount of PA. In order to address this issue, we fabricated the HT-PEMs w...

Descripción completa

Detalles Bibliográficos
Autores principales: Qu, Erli, Jiang, Junqiao, Xiao, Min, Han, Dongmei, Huang, Sheng, Huang, Zhiheng, Wang, Shuanjin, Meng, Yuezhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912004/
https://www.ncbi.nlm.nih.gov/pubmed/35269265
http://dx.doi.org/10.3390/nano12050773
_version_ 1784666991618949120
author Qu, Erli
Jiang, Junqiao
Xiao, Min
Han, Dongmei
Huang, Sheng
Huang, Zhiheng
Wang, Shuanjin
Meng, Yuezhong
author_facet Qu, Erli
Jiang, Junqiao
Xiao, Min
Han, Dongmei
Huang, Sheng
Huang, Zhiheng
Wang, Shuanjin
Meng, Yuezhong
author_sort Qu, Erli
collection PubMed
description As a traditional high-temperature proton exchange membrane (HT-PEM), phosphoric acid (PA)-doped polybenzimidazole (PBI) is often subject to severe mechanical strength deterioration owing to the “plasticizing effect” of a large amount of PA. In order to address this issue, we fabricated the HT-PEMs with a crosslinked network of poly (arylene ether ketone) to confine polybenzimidazole in semi-interpenetration network using self-synthesized amino-terminated PBI (PBI-4NH(2)) as a crosslinker. Compared with the pristine linear poly [2,2′-(p-oxdiphenylene)-5,5′-benzimidazole] (OPBI) membrane, the designed HT-PEMs (semi-IPN/xPBI), in the semi-IPN means that the membranes with a semi-interpenetration structure and x represent the combined weight percentage of PBI-4NH(2) and OPBI. In addition, they also demonstrate an enhanced anti-oxidative stability and superior mechanical properties without the sacrifice of conductivity. The semi-IPN/70PBI exhibits a higher proton conductivity than OPBI at temperatures ranging from 80 to 180 °C. The HT-PEMFC with semi-IPN/70PBI exhibits excellent H(2)/O(2) single cell performance with a power density of 660 mW cm(−2) at 160 °C with flow rates of 250 and 500 mL min(−1) for dry H(2) and O(2) at a backpressure of 0.03 MPa, which is 18% higher than that of OPBI (561 mW cm(−2)) under the same test conditions. The results indicate that the introduction of PBI containing crosslinked networks is a promising approach to improve the comprehensive performance of HT-PEMs.
format Online
Article
Text
id pubmed-8912004
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89120042022-03-11 Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane Qu, Erli Jiang, Junqiao Xiao, Min Han, Dongmei Huang, Sheng Huang, Zhiheng Wang, Shuanjin Meng, Yuezhong Nanomaterials (Basel) Article As a traditional high-temperature proton exchange membrane (HT-PEM), phosphoric acid (PA)-doped polybenzimidazole (PBI) is often subject to severe mechanical strength deterioration owing to the “plasticizing effect” of a large amount of PA. In order to address this issue, we fabricated the HT-PEMs with a crosslinked network of poly (arylene ether ketone) to confine polybenzimidazole in semi-interpenetration network using self-synthesized amino-terminated PBI (PBI-4NH(2)) as a crosslinker. Compared with the pristine linear poly [2,2′-(p-oxdiphenylene)-5,5′-benzimidazole] (OPBI) membrane, the designed HT-PEMs (semi-IPN/xPBI), in the semi-IPN means that the membranes with a semi-interpenetration structure and x represent the combined weight percentage of PBI-4NH(2) and OPBI. In addition, they also demonstrate an enhanced anti-oxidative stability and superior mechanical properties without the sacrifice of conductivity. The semi-IPN/70PBI exhibits a higher proton conductivity than OPBI at temperatures ranging from 80 to 180 °C. The HT-PEMFC with semi-IPN/70PBI exhibits excellent H(2)/O(2) single cell performance with a power density of 660 mW cm(−2) at 160 °C with flow rates of 250 and 500 mL min(−1) for dry H(2) and O(2) at a backpressure of 0.03 MPa, which is 18% higher than that of OPBI (561 mW cm(−2)) under the same test conditions. The results indicate that the introduction of PBI containing crosslinked networks is a promising approach to improve the comprehensive performance of HT-PEMs. MDPI 2022-02-25 /pmc/articles/PMC8912004/ /pubmed/35269265 http://dx.doi.org/10.3390/nano12050773 Text en © 2022 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
Qu, Erli
Jiang, Junqiao
Xiao, Min
Han, Dongmei
Huang, Sheng
Huang, Zhiheng
Wang, Shuanjin
Meng, Yuezhong
Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title_full Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title_fullStr Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title_full_unstemmed Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title_short Polybenzimidazole Confined in Semi-Interpenetrating Networks of Crosslinked Poly (Arylene Ether Ketone) for High Temperature Proton Exchange Membrane
title_sort polybenzimidazole confined in semi-interpenetrating networks of crosslinked poly (arylene ether ketone) for high temperature proton exchange membrane
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912004/
https://www.ncbi.nlm.nih.gov/pubmed/35269265
http://dx.doi.org/10.3390/nano12050773
work_keys_str_mv AT querli polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT jiangjunqiao polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT xiaomin polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT handongmei polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT huangsheng polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT huangzhiheng polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT wangshuanjin polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane
AT mengyuezhong polybenzimidazoleconfinedinsemiinterpenetratingnetworksofcrosslinkedpolyaryleneetherketoneforhightemperatureprotonexchangemembrane