The present study deals with the enhancement of proton transport and conduction properties of solid polymer electrolyte (SPE)-based carboxymethyl cellulose (CMC) blended with polyvinyl alcohol (PVA) doped with ammonium nitrate (NH4NO3) and plasticized with various compositions of polyethylene glycol (PEG). The SPE system was successfully prepared using an economical method, the solution casting technique, and analysed by Fourier transform infrared spectroscopy and electrical impedance spectroscopy. The infrared spectra show that interaction had occurred at O–H and COO− from CMC when PEG was added which prevailed the enhancement of ion dissociation. Glass transition measurement highlighted that the interaction between CMC–PVA–NH4NO3 and ethy...
The present work was carried out to investigate the abnormal trend of electrochemical properties of ...
This paper studies the structural and electrical properties of solid polymer blend electrolytes base...
In this paper, we report the effect of doping sodium iodide (NaI) salt into a polymer blend matrix o...
The present study deals with the enhancement of proton transport and conduction properties of solid ...
This present work investigated the proton (H+) conduction behavior of the blended polymer solid elec...
Carboxymethyl cellulose (CMC)/ polyvinyl alcohol (PVA) blend (80/20 wt %) as host solid bio-polymer ...
The present study investigates the ion transport properties and structural analysis of plasticized s...
This study investigated the influence of plasticizers (polyethylene glycol [PEG] and ethylene carbon...
In this study, the modification of cellulose derivative namely carboxymethyl cellulose (CMC) blended...
In the present work, carboxymethyl cellulose (CMC)–polyvinyl alcohol (PVA)–NH4NO3 with the addition ...
The present work deal with the development of enhanced amorphous solid bio-polymer electrolytes (SPE...
The present work was carried with new type and promising polymer electrolytes system by development ...
Since the introduction of solid polymer based electrolytes in 1973, numerous polymers are particular...
Carboxymethyl cellulose (CMC)/ polyvinyl alcohol (PVA) blend (80/20 wt %) as host solid bio-polymer ...
The increasing interest in green energy storage materials for electrochemical devices with the devel...
The present work was carried out to investigate the abnormal trend of electrochemical properties of ...
This paper studies the structural and electrical properties of solid polymer blend electrolytes base...
In this paper, we report the effect of doping sodium iodide (NaI) salt into a polymer blend matrix o...
The present study deals with the enhancement of proton transport and conduction properties of solid ...
This present work investigated the proton (H+) conduction behavior of the blended polymer solid elec...
Carboxymethyl cellulose (CMC)/ polyvinyl alcohol (PVA) blend (80/20 wt %) as host solid bio-polymer ...
The present study investigates the ion transport properties and structural analysis of plasticized s...
This study investigated the influence of plasticizers (polyethylene glycol [PEG] and ethylene carbon...
In this study, the modification of cellulose derivative namely carboxymethyl cellulose (CMC) blended...
In the present work, carboxymethyl cellulose (CMC)–polyvinyl alcohol (PVA)–NH4NO3 with the addition ...
The present work deal with the development of enhanced amorphous solid bio-polymer electrolytes (SPE...
The present work was carried with new type and promising polymer electrolytes system by development ...
Since the introduction of solid polymer based electrolytes in 1973, numerous polymers are particular...
Carboxymethyl cellulose (CMC)/ polyvinyl alcohol (PVA) blend (80/20 wt %) as host solid bio-polymer ...
The increasing interest in green energy storage materials for electrochemical devices with the devel...
The present work was carried out to investigate the abnormal trend of electrochemical properties of ...
This paper studies the structural and electrical properties of solid polymer blend electrolytes base...
In this paper, we report the effect of doping sodium iodide (NaI) salt into a polymer blend matrix o...