2014
DOI: 10.1080/15421406.2014.966259
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Protonic Transport Analysis of Starch-Chitosan Blend Based Electrolytes and Application in Electrochemical Device

Abstract: Two polymer electrolyte systems (unplasticized and plasticized) based on starchchitosan blend doped with ammonium bromide (NH 4 Br) were prepared. The conductivity was found to be influenced by the number density (n) and mobility (μ) of the ions. The highest conducting plasticized electrolyte had n and μ values of 8.75 × 10 18 cm −3 and 1.03 × 10 −3 cm 2 V −1 s −1 , respectively. Ionic transference number for the highest conducting plasticized electrolyte was found to be 0.92. An electrochemical double layer c… Show more

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Cited by 47 publications
(13 citation statements)
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“…It is worth mentioning that η was observed to be harmonized with C s , when it lowered from 65.8 F/g to 90.1 F/g in the 90th and 100th cycles, respectively. Shukur et al [ 58 ] pointed out that a satisfactory EDLC must have 90–95% η . It was also claimed that a relatively high value of efficiency reflects a compatible electrolyte–electrode contact.…”
Section: Resultsmentioning
confidence: 99%
“…It is worth mentioning that η was observed to be harmonized with C s , when it lowered from 65.8 F/g to 90.1 F/g in the 90th and 100th cycles, respectively. Shukur et al [ 58 ] pointed out that a satisfactory EDLC must have 90–95% η . It was also claimed that a relatively high value of efficiency reflects a compatible electrolyte–electrode contact.…”
Section: Resultsmentioning
confidence: 99%
“…V&A Instrument DP3003 digital DC power supply was employed to conduct the transference number (TNM) analysis via DC polarization method [70]. The cell was polarized at 30 mV and the DC current was monitored continuously as a function of time at room temperature.…”
Section: Experimental Methodsmentioning
confidence: 99%
“…Figure 6 shows current time transient, where the initial current decreases over electrochemical course due to the decrease in ionic species in the electrolyte and reaches a steady state when it is completely reduced [ 56 ]. Under steady-state conditions, the movement of mobile ions is balanced by the diffusion process [ 56 ].…”
Section: Resultsmentioning
confidence: 99%
“…Figure 6 shows current time transient, where the initial current decreases over electrochemical course due to the decrease in ionic species in the electrolyte and reaches a steady state when it is completely reduced [56]. Under steady-state conditions, the movement of mobile ions is balanced by the diffusion process [56]. Rani et al [57] stated that during the polarization process, the stainless steel electrodes are responsible for the current flow blocking of ions as a result of the passing of electrons only through the solid metallic electrodes.…”
Section: Tnm Studymentioning
confidence: 99%