4.6 Article

Bio-Based Plasticized PVA Based Polymer Blend Electrolytes for Energy Storage EDLC Devices: Ion Transport Parameters and Electrochemical Properties

Journal

MATERIALS
Volume 14, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/ma14081994

Keywords

PVA; methylcellulose; glycerol plasticizer; circuit modeling; ion transport parameters; electrochemical properties; EDLC fabrication

Funding

  1. University of Sulaimani
  2. Prince Sultan University
  3. Komar University of Science and Technology

Ask authors/readers for more resources

The report presents a simple solution casting method for preparing plasticized polyvinyl alcohol (PVA)/methylcellulose (MC)-ammonium iodide (NH4I) electrolyte at room temperature, showing enhanced ion properties with increased glycerol content. The PVA: MC-NH4I proton conducting polymer electrolyte (PE) is deemed suitable for energy storage device (ESD) applications based on various electric and electrochemical properties. The addition of plasticizer improves charge carrier density in dielectric properties, resulting in improved energy and power density over multiple cycles.
This report shows a simple solution cast methodology to prepare plasticized polyvinyl alcohol (PVA)/methylcellulose (MC)-ammonium iodide (NH4I) electrolyte at room temperature. The maximum conducting membrane has a conductivity of 3.21 x 10(-3) S/cm. It is shown that the number density, mobility and diffusion coefficient of ions are enhanced by increasing the glycerol. A number of electric and electrochemical properties of the electrolyte-impedance, dielectric properties, transference numbers, potential window, energy density, specific capacitance (C-s) and power density-were determined. From the determined electric and electrochemical properties, it is shown that PVA: MC-NH4I proton conducting polymer electrolyte (PE) is adequate for utilization in energy storage device (ESD). The decrease of charge transfer resistance with increasing plasticizer was observed from Bode plot. The analysis of dielectric properties has indicated that the plasticizer is a novel approach to increase the number of charge carriers. The electron and ion transference numbers were found. From the linear sweep voltammetry (LSV) response, the breakdown voltage of the electrolyte is determined. From Galvanostatic charge-discharge (GCD) measurement, the calculated C-s values are found to drop with increasing the number of cycles. The increment of internal resistance is shown by equivalent series resistance (ESR) plot. The energy and power density were studied over 250 cycles that results to the value of 5.38-3.59 Wh/kg and 757.58-347.22 W/kg, respectively.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.6
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available