Title :
Synthesis and Characterization of Hot-Pressed Solid Polymer Electrolytes
Author :
Chandra, Angesh ; Chandra, Archana ; Thakur, S.S. ; Bhatt, Alok
Author_Institution :
Dept. of Appl. Phys., Shri Shankaracharya Inst. of Prof. Manage. & Tech., Raipur, India
Abstract :
Synthesis and characterization of an ion conducting solid polymer electrolyte (SPE) membranes: (1-x) PEO: x KHCO3, where x = 0 <; × <; 50 wt. (%), are reported. SPE membranes were casted using a recently developed hot-press technique. The composition: 70 PEO : 30 KHCO3 with conductivity (σ) ~8.5 × 10-7 S.cm-1 was identified as highest conducting composition from the compositional dependent conductivity study and this has been referred to as the Optimum Conducting Composition (OCC). An enhancement in the room temperature conductivity of approximately two orders of magnitude has been achieved in OCC as compared to pure polymer host PEO. Material characterizations were done with the help of Scanning Electron Micrograph (SEM) and DSC techniques. The basic ionic transport parameters viz. ionic conductivity (σ), ionic mobility (μ) and mobile ion concentration (n) have been characterized using different experimental techniques.
Keywords :
casting; differential scanning calorimetry; hot pressing; ion mobility; ionic conductivity; membranes; polymer electrolytes; scanning electron microscopy; solid electrolytes; DSC techniques; SEM; SPE membranes; compositional dependent conductivity; hot-pressed solid polymer electrolytes synthesis; ion conducting solid polymer electrolyte membranes; ionic conductivity; ionic mobility; ionic transport parameters; material characterizations; mobile ion concentration; optimum conducting composition; room temperature conductivity; scanning electron micrograph; temperature 293 K to 298 K; Conductivity; Conductivity measurement; Films; Mobile communication; Physics; Polymers; Solids;
Conference_Titel :
Nanoscience, Technology and Societal Implications (NSTSI), 2011 International Conference on
Conference_Location :
Bhubaneswar
Print_ISBN :
978-1-4577-2035-2
DOI :
10.1109/NSTSI.2011.6111773