AbstractMicroplastic and metal waste from electronic industries are becoming a major threat to the environment and marine ecosystem. Green processing and employing natural derived materials are solutions to this issue. In this work, an electrical double-layer capacitor (EDLC) fabricated from green polymer electrolyte (GPE) sandwiched in between two microbial cellulose-based electrodes is characterized. The eco-friendly electrode films of interconnected cellulose and multiwalled carbon nanotube (MWCNT) are obtained via harmless, inexpensive, and simple procedure. The GPE consists of methylcellulose-potato starch blend as polymer blend and ammonium iodide (NH4I) is chosen as ion provider. Glycerol serves as plasticization agent for alternativ...
Recent improvements in flexible electronics have increased the need to develop flexible and lightwei...
Solid-state electric double-layer capacitors (EDLCs) based on corn starch biodegradable polymer elec...
Poly(methyl methacrylate), PMMA based gel polymer electrolytes (GPE) containing immobilized lithium ...
The increasing demand, rapid consumption of fossil fuels and undesirable consequences of environmen...
Compatible green polymer electrolytes based on methyl cellulose (MC) were prepared for energy storag...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Natural cellulose has recently emerged as potential candidate for replacing fluorinated polymers (e....
: In this work, γ-valerolactone (GVL), a green solvent based on largely available biomass (carbohydr...
Today’s society is currently performing an exit from fossilfuel energy sources. The change to sustai...
Today’s society is currently performing an exit from fossilfuel energy sources. The change to sustai...
A highly porous freestanding supercapacitor electrode has been fabricated through a simple, inexpens...
A highly porous freestanding supercapacitor electrode has been fabricated through a simple, inexpens...
Cellulose is the most abundant biopolymer in the world and the main component of paper. Modern so...
Recent improvements in flexible electronics have increased the need to develop flexible and lightwei...
Solid-state electric double-layer capacitors (EDLCs) based on corn starch biodegradable polymer elec...
Poly(methyl methacrylate), PMMA based gel polymer electrolytes (GPE) containing immobilized lithium ...
The increasing demand, rapid consumption of fossil fuels and undesirable consequences of environmen...
Compatible green polymer electrolytes based on methyl cellulose (MC) were prepared for energy storag...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Water-processable natural polymers represent a valuable alternative for the sustainable manufacturin...
Natural cellulose has recently emerged as potential candidate for replacing fluorinated polymers (e....
: In this work, γ-valerolactone (GVL), a green solvent based on largely available biomass (carbohydr...
Today’s society is currently performing an exit from fossilfuel energy sources. The change to sustai...
Today’s society is currently performing an exit from fossilfuel energy sources. The change to sustai...
A highly porous freestanding supercapacitor electrode has been fabricated through a simple, inexpens...
A highly porous freestanding supercapacitor electrode has been fabricated through a simple, inexpens...
Cellulose is the most abundant biopolymer in the world and the main component of paper. Modern so...
Recent improvements in flexible electronics have increased the need to develop flexible and lightwei...
Solid-state electric double-layer capacitors (EDLCs) based on corn starch biodegradable polymer elec...
Poly(methyl methacrylate), PMMA based gel polymer electrolytes (GPE) containing immobilized lithium ...