Operation Limits of Integrated Photo‐Rechargeable Batteries

B Byung‐Man Kim (Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK) A Arvind Pujari (Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK) H Hooman Abbasi (Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK) W Weidong Xu (University of Cambridge , , ,) Y Yutong Han S Samuel D. Stranks M Michael De Volder

Abstract

ABSTRACT Monolithic photo‐rechargeable batteries (PRB) are attractive solution for powering off‐grid autonomous systems. However, the fundamental effects limiting the light‐charging process in such devices are not well understood. Herein, we present an integrated PRB design that can be fully charged under a range of illuminances. We use it as a model system to correlate the decay in photo‐charging current with photo‐induced charge kinetics. Our results indicate that light‐induced hole transport gradually deteriorates with increasing state of charge, which is attributed to the anion‐coupled hole accumulation in the cathode layer. Furthermore, our device reveals that the potential gap between the hole transport layer and the cathode is critical for driving a photo‐induced delithiation of the cathode. If the cathode has a more positive delithiation potential than the hole transport level, the photo‐charging current rapidly decays despite the photo‐cells providing sufficient voltage to charge the battery. These findings demonstrate that the device physics of PRBs vary greatly from that of separately coupled solar cells and batteries, thus providing new insights in their working mechanism and their future design guidelines.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 17, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (7)

B

Byung‐Man Kim

Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK

A

Arvind Pujari

Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK

H

Hooman Abbasi

Institute for Manufacturing Department of Engineering University of Cambridge Cambridge UK

W

Weidong Xu

University of Cambridge , , ,

Y

Yutong Han

S

Samuel D. Stranks

M

Michael De Volder