Polysaccharide-based polymer electrolytes for future renewable energy sources
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Elsevier
Reference129 articles.
1. Pastes and hydrogels from carboxymethyl cellulose sodium salt as supporting electrolyte of solid electrochemical supercapacitors;Pérez-Madrigal;Carbohydr. Polym.,2018
2. Electrical and structural studies of polymer electrolyte based on chitosan/methyl cellulose blend doped with BMIMTFSI;Misenan;Mater. Res. Express,2018
3. Cellulose-based novel hybrid polymer electrolytes for green and efficient Na-ion batteries;Colò;Electrochim. Acta,2015
4. Effect of polar aprotic solvents on hydroxyethyl cellulose-based gel polymer electrolyte;Selvanathan;Ionics,2018
5. Investigation of bio polymer electrolyte based on cellulose acetate-ammonium nitrate for potential use in electrochemical devices;Monisha;Carbohydr. Polym.,2017
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1. Green Synthesis of Citric Acid-Crosslinked Cellulose Acetate Membrane for Polymer Electrolyte;Materials Science Forum;2023-12-14
2. Flexible fibrous structure of bacterial cellulose by synergic role carboxymethyl cellulose and glycerol for LiB polymer electrolyte;Materials Research Express;2023-05-01
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