Review of Chitosan-Based Polymers as Proton Exchange Membranes and Roles of Chitosan-Supported Ionic Liquids
Обзор полимеров на основе хитозана в качестве протон-обменных мембран и роли ионных жидкостей, нанесённых на хитозан
2020-01-17
SCID: 54.1/qq7fur7w
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chitosan-based polymersfuel cell applicationsionic liquidsproton conductivityproton exchange membranes
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Abstract (AI)
Perfluorosulphonic acid-based membranes such as Nafion are widely used in fuel cell applications. However, these membranes have several drawbacks, including high expense, non-eco-friendliness, and low proton conductivity under anhydrous conditions. Biopolymer-based membranes, such as chitosan (CS), cellulose, and carrageenan, are popular. They have been introduced and are being studied as alternative materials for enhancing fuel cell performance, because they are environmentally friendly and economical. Modifications that will enhance the proton conductivity of biopolymer-based membranes have been performed. Ionic liquids, which are good electrolytes, are studied for their potential to improve the ionic conductivity and thermal stability of fuel cell applications. This review summarizes the development and evolution of CS biopolymer-based membranes and ionic liquids in fuel cell applications over the past decade. It also focuses on the improved performances of fuel cell applications using biopolymer-based membranes and ionic liquids as promising clean energy.
Key Findings
1
Biopolymer membranes incorporating ionic liquids are presented as promising materials for cleaner energy technologies.
2
Chitosan-based biopolymer membranes are reviewed as environmentally friendly and economical alternatives to Nafion for fuel-cell applications.
3
Compared with perfluorosulphonic acid membranes, chitosan-based membranes address concerns over cost and environmental impact but require modification to improve proton conductivity.
4
Ionic liquids are identified as promising additives for enhancing the ionic conductivity and thermal stability of chitosan-based fuel-cell membranes.
5
The review summarizes a decade of developments in chitosan membranes and chitosan-supported ionic liquids for improving fuel-cell performance, particularly under anhydrous conditions.
Research Object
chitosan-based biopolymer proton exchange membranes and chitosan-supported ionic liquids for fuel cell applications
Research Subject
their development, proton and ionic conductivity, thermal stability, and resulting fuel-cell performance, particularly under anhydrous conditions
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2020-01-17
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