In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low-power Internet-of- Everything applications and the effect of bending (both static and cyclic) on its electrical performance. The supercapacitors are all comprised of carbon electrodes (activated carbon (AC) on a graphite current collector) printed on a flexible plastic substrate, with a NaCl (aq) electrolyte. The capacitance of all the devices is on the order of 0.3 F. Two different substrates (A1 coated PET and PP/PA/EVOH/PA/PE [PP-PE]) as well as two different top-bottom substrate sealing methods (heat sealing, adhesive film) were investigated, with the PP-PE substrate and adhesive film sealing found to be preferable. However, all supercap...
In recent years, much effort has been spent developing thin, lightweight and flexible energy storage...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
A novel flexible supercapacitor device was developed from a polyethylene terephthalate substrate, re...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
Recently our modern society is demanding flexible, low-cost, and lightweight electrochemical energy ...
A flexible supercapacitor (SC) is an attractive energy storage device for powering low-power sensors...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
We have developed thin and flexible supercapacitors that can be combined with energy harvesting comp...
We have developed material and architectural alternatives for flexible supercapacitors and investiga...
In this research we demonstrate that a flexible ultra-thin supercapacitor can be fabricated using hi...
Gelatin offers a safe and sustainable alternative for gel electrolytes in printed supercapacitors. I...
Supercapacitors are energy storage devices, in which storage of energy is based on the formation of ...
Printed electronics is the key to the next generation of energy storage devices. Recently the emerge...
The introduction of paper-based platforms for developing novel energy storage devices such as superc...
In recent years, much effort has been spent developing thin, lightweight and flexible energy storage...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
A novel flexible supercapacitor device was developed from a polyethylene terephthalate substrate, re...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
Recently our modern society is demanding flexible, low-cost, and lightweight electrochemical energy ...
A flexible supercapacitor (SC) is an attractive energy storage device for powering low-power sensors...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
We have developed thin and flexible supercapacitors that can be combined with energy harvesting comp...
We have developed material and architectural alternatives for flexible supercapacitors and investiga...
In this research we demonstrate that a flexible ultra-thin supercapacitor can be fabricated using hi...
Gelatin offers a safe and sustainable alternative for gel electrolytes in printed supercapacitors. I...
Supercapacitors are energy storage devices, in which storage of energy is based on the formation of ...
Printed electronics is the key to the next generation of energy storage devices. Recently the emerge...
The introduction of paper-based platforms for developing novel energy storage devices such as superc...
In recent years, much effort has been spent developing thin, lightweight and flexible energy storage...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
A novel flexible supercapacitor device was developed from a polyethylene terephthalate substrate, re...