Synergistic Blends of Sodium Alginate and Pectin Biopolymer Hosts as Conducting Electrolytes for Electrochemical Applications.
R JansiBoligarla VinayM S RevathyPonnusamy SasikumarLatha MarasamyAruna JananiRajesh HaldharSeong-Cheol KimZainab M AlmarhoonM Khalid HossainPublished in: ACS omega (2024)
The world needs sustainable energy resources with affordable, economic, and accountable sources. Consequently, energy innovation technologies are evolving toward electrochemical applications like batteries, supercapacitors, etc. The current study involves the solid blend biopolymer electrolyte (SBBE) with different compositions of sodium alginate blended with pectin via the casting technique. The characterization of the sample was tested by X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, AC impedance, linear sweep voltammetry (LSV), and cyclic voltammetry (CV) analyses. Evidently, the sample NP4 (NaAlg/pectin = 60:40 wt %) has a higher conductivity of 1.26 × 10 -7 and 3.25 × 10 -6 S cm -1 at 303 and 353 K, respectively. The performances of the samples were analyzed with variations in temperature, frequency, and time responses to signify the blended nature of the electrolyte. Hence, the studied biopolymers can be constructed for electrochemical device applications.
Keyphrases
- solid state
- ionic liquid
- gold nanoparticles
- molecularly imprinted
- label free
- cell wall
- high resolution
- dual energy
- wound healing
- drinking water
- wastewater treatment
- ion batteries
- computed tomography
- cancer therapy
- tissue engineering
- reduced graphene oxide
- magnetic resonance
- crystal structure
- solid phase extraction
- contrast enhanced