Novel polybenzimidazole/graphitic carbon nitride nanosheets composite membrane for the application of acid-alkaline amphoteric water electrolysis

A novel composite membrane based on polybenzimidazole incorporating graphitic carbon nitride nanosheets for acid-alkaline amphoteric water electrolysis is prepared to enhance the conductivity and electrolysis performance. [Display omitted] •The m-PBI/g-C3N4 composite membrane was synthesized and ado...

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Published inJournal of energy chemistry Vol. 64; pp. 607 - 614
Main Authors Lv, Bo, Yin, Hang, Shao, Zhigang, Luan, Zoujie, Huang, Ziyi, Sun, Shucheng, Teng, Yue, Miu, Chunhui, Gao, Qiang
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.01.2022
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Summary:A novel composite membrane based on polybenzimidazole incorporating graphitic carbon nitride nanosheets for acid-alkaline amphoteric water electrolysis is prepared to enhance the conductivity and electrolysis performance. [Display omitted] •The m-PBI/g-C3N4 composite membrane was synthesized and adopted for the first time.•The membranes showed excellent proton conductivity and hydroxide conductivity.•The m-PBI/1% g-C3N4 composite membrane exhibited the best electrolysis performance. It is a great challenge to develop membrane materials with high performance and long durability for acid-alkaline amphoteric water electrolysis. Hence, the graphitic carbon nitride (g-C3N4) nanosheets were compounded with the (2,2′-m-phenylene)-5,5′-benzimidazole (m-PBI) matrix for the preparation of m-PBI/g-C3N4 composite membranes. The synthesis of g-C3N4 nanosheets and m-PBI matrix have been confirmed by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscoy (TEM) and 1H nuclear magnetic resonance spectra (1H NMR), respectively. The fourier transform infrared spectroscopy (FT-IR) and SEM of the composite membranes showed the g-C3N4 nanosheets were well dispersed in the m-PBI/g-C3N4 composite membrane. The mechanical properties test exhibited the good mechanical strength, and the TGA curves of m-PBI showed the high thermal stability of composite membranes. Besides, the m-PBI/g-C3N4 composite membrane showed excellent proton and hydroxide ion conductivity, which was higher than pure m-PBI and Nafion 115 membrane. The acid-alkaline amphoteric water electrolysis test showed m-PBI/1% g-C3N4 composite membrane has the best performance with a current density of 800 mA cm−2 at cell voltage of 1.98 V at 20 °C. It showed that m-PBI/g-C3N4 composite membrane has a good application prospect for acid-alkaline amphoteric water electrolysis.
ISSN:2095-4956
DOI:10.1016/j.jechem.2021.05.009