3D nanoflower-like layered double hydroxide modified quaternized chitosan/polyvinyl alcohol composite anion conductive membranes for fuel cells
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Materials Chemistry,Polymers and Plastics,Organic Chemistry
Reference34 articles.
1. Ethylene glycol-assisted fabrication and superb adsorption capacity of hierarchical porous flowerlike magnesium oxide microspheres for phosphate;Ahmed;Inorganic Chemistry Frontiers,2019
2. Core-shell SiO2@LDHs with tuneable size, composition and morphology;Chen;Chemical Communications,2015
3. A three-decker strategy based on multifunctional layered double hydroxide to realize high-performance hydroxide exchange membranes for fuel cell applications;Chen;ACS Applied Materials& Interfaces,2018
4. Review of cell performance in anion exchange membrane fuel cells;Dekel;Journal of Power Sources,2018
5. Layered double hydroxide-polyphosphazene-based ionomer hybrid membranes with electric field-aligned domains for hydroxide transport;Fan;Journal of Materials Chemistry,2014
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