Harvesting micropower energy from the ambient environment requires an intermediate energy storage, for which printed aqueous supercapacitors are well suited due to their low cost and environmental friendliness. In this work, a systematic study of a large set of devices is used to investigate the effect of process variability and operating voltage on the performance and stability of screen printed aqueous supercapacitors. The current collectors and active layers are printed with graphite and activated carbon inks, respectively, and aqueous NaCl used as the electrolyte. The devices are characterized through galvanostatic discharge measurements for quantitative determination of capacitance and equivalent series resistance (ESR), as well as imp...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Supercapacitors demonstrate substantial improvement in charge storage capability compared to the con...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
We have developed thin and flexible supercapacitors that can be combined with energy harvesting comp...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
Supercapacitors are energy storage devices, in which storage of energy is based on the formation of ...
Aqueous supercapacitors offer a safe alternative for intermediate energy storage in energy harvestin...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
We have developed material and architectural alternatives for flexible supercapacitors and investiga...
Printed supercapacitors were prepared to be applied as a part of a hybrid power source in printed el...
Abstract Scalable aqueous-based supercapacitors are ideal as future energy storage technologies due ...
Printed electronics is the key to the next generation of energy storage devices. Recently the emerge...
We report the fabrication of a supercapacitor on a plastic substrate with mass-production-compatible...
In this research we demonstrate that a flexible ultra-thin supercapacitor can be fabricated using hi...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Supercapacitors demonstrate substantial improvement in charge storage capability compared to the con...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...
We have developed thin and flexible supercapacitors that can be combined with energy harvesting comp...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
Supercapacitors are energy storage devices, in which storage of energy is based on the formation of ...
Aqueous supercapacitors offer a safe alternative for intermediate energy storage in energy harvestin...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
We have developed material and architectural alternatives for flexible supercapacitors and investiga...
Printed supercapacitors were prepared to be applied as a part of a hybrid power source in printed el...
Abstract Scalable aqueous-based supercapacitors are ideal as future energy storage technologies due ...
Printed electronics is the key to the next generation of energy storage devices. Recently the emerge...
We report the fabrication of a supercapacitor on a plastic substrate with mass-production-compatible...
In this research we demonstrate that a flexible ultra-thin supercapacitor can be fabricated using hi...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Supercapacitors demonstrate substantial improvement in charge storage capability compared to the con...
In this study, we propose a highly flexible environmentally friendly supercapacitor suitable for low...