Gelatin offers a safe and sustainable alternative for gel electrolytes in printed supercapacitors. In this work, the performance of a non-toxic natural polymer electrolyte is studied in screen and stencil-printed supercapacitors. The basic electrical properties are determined with samples prepared on laboratory scale; subsequently, roll-to-roll printed samples are used to observe behavior of the samples under severe mechanical stress. With a 2 M NaCl gel electrolyte, electrical performance equal to that of a 1 M liquid electrolyte is reached, and the devices endure bending down to a 10 mm radius. Even below that, functional devices are successfully measured, although leakage current levels deteriorate somewhat during bending. However, even ...
Gel polymer electrolytes with a satisfied ionic conductivity have attracted interest in flexible ene...
To supplement the ever increasing power demand in the present day world, supercapacitors have emerge...
The results showed a slight increase in internal resistance under the influence of bending and confi...
Gelatin offers a safe and sustainable alternative for gel electrolytes in printed supercapacitors. I...
Presented to the 10th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held at ...
International audienceWith the rapid development of portable electronic products, wearable flexible ...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
An environmentally friendly hydrogel based on gelatin has been investigated as a gel polymer electro...
To date, various types of gel polymer electrolytes have been studied as a potential substitute for l...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
A novel high-performance flexible gel polymer electrolyte (FGPE) for supercapacitors is prepared by ...
International audienceThe development of safe flexible supercapacitors implies the use of new non-li...
The present work reports on high-performance and flexible supercapacitors assembled using a cost-eff...
Electrochemical capacitors are electrochemical devices with fast and highly reversible charge-storag...
Environmentally friendly supercapacitors are fabricated using commercial grade aluminum coated paper...
Gel polymer electrolytes with a satisfied ionic conductivity have attracted interest in flexible ene...
To supplement the ever increasing power demand in the present day world, supercapacitors have emerge...
The results showed a slight increase in internal resistance under the influence of bending and confi...
Gelatin offers a safe and sustainable alternative for gel electrolytes in printed supercapacitors. I...
Presented to the 10th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held at ...
International audienceWith the rapid development of portable electronic products, wearable flexible ...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
An environmentally friendly hydrogel based on gelatin has been investigated as a gel polymer electro...
To date, various types of gel polymer electrolytes have been studied as a potential substitute for l...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
A novel high-performance flexible gel polymer electrolyte (FGPE) for supercapacitors is prepared by ...
International audienceThe development of safe flexible supercapacitors implies the use of new non-li...
The present work reports on high-performance and flexible supercapacitors assembled using a cost-eff...
Electrochemical capacitors are electrochemical devices with fast and highly reversible charge-storag...
Environmentally friendly supercapacitors are fabricated using commercial grade aluminum coated paper...
Gel polymer electrolytes with a satisfied ionic conductivity have attracted interest in flexible ene...
To supplement the ever increasing power demand in the present day world, supercapacitors have emerge...
The results showed a slight increase in internal resistance under the influence of bending and confi...