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Photo-Rechargeable Zinc-Ion Capacitor Using 2D Graphitic Carbon Nitride.

Accepted version
Peer-reviewed

Type

Article

Change log

Authors

Boruah, Buddha Deka  ORCID logo  https://orcid.org/0000-0003-0107-8339
Mathieson, Angus 
Wen, Bo 
Jo, Changshin 

Abstract

Off-grid energy storage devices are becoming increasingly important to power distributed applications, such as the Internet of things, and smart city ubiquitous sensor systems. To date, this has been achieved by combining an energy storage device, e.g., a battery or capacitor with an energy harvester, e.g., a solar cell. However, this approach inherently increases the device footprint and the output voltages of energy harvesters often do not match those required by energy storage device. Here we propose the first photo-rechargeable zinc-ion capacitors, where graphitic carbon nitride acts simultaneously as the capacitor electrode and light harvesting material. This approach allows light to be used to recharge the capacitor directly and they can be operated in a continuous light powered mode. These capacitors show a photo-rechargeable specific capacitance of ∼11377 mF g-1, a photo-charging voltage response of ∼850 mV, and a cyclability with ∼90% capacitance retention over 1000 cycles.

Description

Keywords

Hybrid zinc-ion capacitor, graphitic carbon nitride, off-grid energy, photo-rechargeable

Journal Title

Nano Lett

Conference Name

Journal ISSN

1530-6984
1530-6992

Volume Title

20

Publisher

American Chemical Society (ACS)

Rights

All rights reserved
Sponsorship
Engineering and Physical Sciences Research Council (EP/L016087/1)
European Commission Horizon 2020 (H2020) Marie Sklodowska-Curie actions (796648)
European Commission Horizon 2020 (H2020) ERC (866005)
EPSRC (1944209)
Newton International Fellowship-Royal Society (UK) grant NIF∖R1∖181656 ERC MIGHTY - 866005 EPSRC Graphene CDT EP/L016087/1 Marie Skłodowska-Curie Actions MSCA-IF 796648