In this work we report a flexible energy supply unit made by printing flexible disposable aqueous supercapacitor modules onto a light harvester. In order to demonstrate simpler and more scalable manufacturing processes, we printed the supercapacitors monolithically instead of laminating electrodes face-to-face and integrated the series connections into the fabrication process. The supercapacitor modules were printed onto the backside of the Organic Photovoltaic (OPV) modules to combine energy harvesting and storage module for harvesting light under normal indoor conditions, storing it in a supercapacitor module, and thus offering power for low power IoT devices.Peer reviewe
Organic photovoltaics with the properties of flexibility, portability, and printability are ideal ca...
We report the fabrication of a supercapacitor on a plastic substrate with mass-production-compatible...
Organic pholovoltaics are being explored for powering electronic devices by harvesting the suns ener...
We report the fabrication of flexible, printed dual cell supercapacitors (DCSCs) and their implement...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
The growing energy demand of humankind and the concern about climate change require rethinking how e...
Emerging wireless and flexible electronic systems such as wearable devices and sensor networks call ...
We report a flexible energy harvesting circuit fabricated by roll-to-roll compatible, solution-proce...
A printed energy harvesting and storage circuit powered by ambient office lighting and its use to po...
Internet of Things (IoT) and Internet of Everything (IoE) concepts will have significant impact on t...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
Solar energy, although it has the highest power density available in terms of renewable energy, has ...
Conjugated polymers have many properties which make them attractive for use in applications in the f...
The unique properties of organic solar modules allow the application of PV in new fields. The bigges...
A novel solvent mixture points the way to cheap, flexible sources of en-ergy and new applications su...
Organic photovoltaics with the properties of flexibility, portability, and printability are ideal ca...
We report the fabrication of a supercapacitor on a plastic substrate with mass-production-compatible...
Organic pholovoltaics are being explored for powering electronic devices by harvesting the suns ener...
We report the fabrication of flexible, printed dual cell supercapacitors (DCSCs) and their implement...
Electrical energy storage facilitates the use of electrical devices also when there is no full-time ...
The growing energy demand of humankind and the concern about climate change require rethinking how e...
Emerging wireless and flexible electronic systems such as wearable devices and sensor networks call ...
We report a flexible energy harvesting circuit fabricated by roll-to-roll compatible, solution-proce...
A printed energy harvesting and storage circuit powered by ambient office lighting and its use to po...
Internet of Things (IoT) and Internet of Everything (IoE) concepts will have significant impact on t...
Energy harvesting from ambient sources such as light or vibrations is a promising method for powerin...
Solar energy, although it has the highest power density available in terms of renewable energy, has ...
Conjugated polymers have many properties which make them attractive for use in applications in the f...
The unique properties of organic solar modules allow the application of PV in new fields. The bigges...
A novel solvent mixture points the way to cheap, flexible sources of en-ergy and new applications su...
Organic photovoltaics with the properties of flexibility, portability, and printability are ideal ca...
We report the fabrication of a supercapacitor on a plastic substrate with mass-production-compatible...
Organic pholovoltaics are being explored for powering electronic devices by harvesting the suns ener...