2020
DOI: 10.1007/s10008-019-04490-4
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Sodium ion conducting nanocomposite polymer electrolyte membrane for sodium ion batteries

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Cited by 29 publications
(14 citation statements)
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“…124,200,201 In addition, the physical thickness of the electrolyte membrane (which limits ionic transport) plays a crucial role in determining the battery performance. 202,203 Polymer electrolytes can be classified as GPEs, SPEs, and composite polymer electrolytes (CPEs), represented in Fig. 11 based on their state of existence, presence of LEs, additives added, etc.…”
Section: Solid Polymer Electrolytesmentioning
confidence: 99%
“…124,200,201 In addition, the physical thickness of the electrolyte membrane (which limits ionic transport) plays a crucial role in determining the battery performance. 202,203 Polymer electrolytes can be classified as GPEs, SPEs, and composite polymer electrolytes (CPEs), represented in Fig. 11 based on their state of existence, presence of LEs, additives added, etc.…”
Section: Solid Polymer Electrolytesmentioning
confidence: 99%
“…Phase inversion techniques can impart high porosity of over 70 % to polymer membranes. Verma, Mishra & Rai [79] applied phase inversion to produce PVdF‐HFP membranes using dimethyl formamide (DMF) as solvent and TiO 2 nanoparticles for pore tuning, but differences in sodium salt and electrode composition undermine direct comparisons of reported ionic conductivity with other studies.…”
Section: Combining and Mixingmentioning
confidence: 99%
“…The membrane showed predominantly ionically conducting behavior and a Na ion transport number of about ∼0.31. The cyclic voltammetry showed it was electrochemical stable at 3.5V [ 175 ].…”
Section: Contributions From Indian Researchersmentioning
confidence: 99%