Ionic conductivity enhancement of PVA: carboxymethyl cellulose poly-blend electrolyte films through the doping of NaI salt

V Cyriac, Ismayil, IM Noor, K Mishra, C Chavan… - Cellulose, 2022 - Springer
In this paper, we report the effect of doping sodium iodide (NaI) salt into a polymer blend
matrix of sodium carboxymethyl cellulose (NaCMC) and poly (vinyl alcohol)(PVA). Solution …

The rise of bio-inspired energy devices

R Singh, HW Rhee - Energy Storage Materials, 2019 - Elsevier
Biomaterials are a promising class of materials with a wide range of applications; they are
currently one of the most active fields of research owing to their enormous potential for …

Effect of variation of different nanofillers on structural, electrical, dielectric, and transport properties of blend polymer nanocomposites

A Arya, M Sadiq, AL Sharma - Ionics, 2018 - Springer
In the present work, the effect of various nanofillers with different particle sizes and dielectric
constants (BaTiO 3, CeO 2, Er 2 O 3, or TiO 2) on blend solid polymer electrolyte comprising …

Tailoring of the structural, morphological, electrochemical, and dielectric properties of solid polymer electrolyte

A Arya, AL Sharma - Ionics, 2019 - Springer
A solid polymer electrolyte composed of poly (ethylene oxide) and sodium
hexafluorophosphate has been synthesized with a varying fraction of succinonitrile via …

Supercapacitive performance analysis of low cost and environment friendly potato starch based electrolyte system with anodized aluminium and teflon coated carbon …

M Yadav, M Kumar, N Srivastava - Electrochimica Acta, 2018 - Elsevier
For device fabrication, materials needs to satisfy 3Es (economical, environment friendly and
easy to prepare) along with technical characteristics. Present paper reports an electrolyte …

Study of Arrowroot Starch‐Based Polymer Electrolytes and Its Application in MFC

T Tiwari, M Kumar, M Yadav, N Srivastava - Starch‐Stärke, 2019 - Wiley Online Library
Microbial fuel cell (MFC), a biochemical‐catalyzed system which generates electricity by
oxidizing biodegradable organic matter in the presence of either fermentative bacteria or …

[HTML][HTML] Sodium iodide dopant mediated enhancements in energy storage characteristics of polysaccharide polymer electrolytes

SK Shetty, P Nayak, YN Sudhakar, IM Noor - Journal of Energy Storage, 2024 - Elsevier
Sodium iodide dopant influencing the properties of polysaccharide polymer sodium
carboxymethyl cellulose is analyzed in this work by FTIR, XRD, DSC, TGA, SEM, UTM, and …

Enhanced ionic conductivity of proton-conducting flaxseed gum based biopolymer electrolyte for energy storage

SRK Blesstina, T Mathavan, T Joel… - International Journal of …, 2024 - Elsevier
This work presents a facile and systematic way to prepare low resistive proton conducting
biopolymer electrolyte (BPE) membranes from flaxseed gum (FG) via the solution casting …

Polysaccharide Biomaterials for Electrochemical Applications

N Srivastava, D Yadav - Sustainable Materials for …, 2023 - Wiley Online Library
Today's lifestyle and energy devices are synonyms to each other hence for sustainable
developments optimum use of renewable energy sources is the only way out. For better …

Electrochemical characterization of NaClO4–mixed rice starch as a cost-effective and environment-friendly electrolyte

M Yadav, G Nautiyal, A Verma, M Kumar, T Tiwari… - Ionics, 2019 - Springer
Being eco-friendly, cost-effective, easy to synthesize and handle, starch-based electrolytes
have tremendous advantages for electrochemical device fabrications. Starch electrolytes …