Aqueous-based recycling of perovskite photovoltaics

X Xun Xiao N Niansheng Xu X Xueyu Tian T Tiankai Zhang B Bingzheng Wang X Xiaoming Wang Y Yeming Xian C Chunyuan Lu X Xiangyu Ou Y Yanfa Yan L Licheng Sun F Fengqi You F Feng Gao

Abstract

Abstract Cumulative silicon photovoltaic (PV) waste highlights the importance of considering waste recycling before the commercialization of emerging PV technologies1,2. Perovskite PVs are a promising next-generation technology3, in which recycling their end-of-life waste can reduce the toxic waste and retain resources4,5. Here we report a low-cost, green-solvent-based holistic recycling strategy to restore all valuable components from perovskite PV waste. We develop an efficient aqueous-based perovskite recycling approach that can also rejuvenate degraded perovskites. We further extend the scope of recycling to charge-transport layers, substrates, cover glasses and metal electrodes. After repeated degradation–recycling processes, the recycled devices show similar efficiency and stability compared with the fresh devices. Our holistic recycling strategy reduces by 96.6% resource depletion and by 68.8% human toxicity (cancer effects) impacts associated with perovskite PVs compared with the landfill treatment. With recycling, the levelized cost of electricity also decreases for both utility-scale and residential systems. This study highlights unique opportunities of perovskite PVs for holistic recycling and paves the way for a sustainable perovskite solar economy.

Article Details

Journal Nature
Volume / Issue Vol. 638, Issue 8051
Published February 20, 2025
Pages 670-675
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (13)

X

Xun Xiao

N

Niansheng Xu

X

Xueyu Tian

T

Tiankai Zhang

B

Bingzheng Wang

X

Xiaoming Wang

Y

Yeming Xian

C

Chunyuan Lu

X

Xiangyu Ou

Y

Yanfa Yan

L

Licheng Sun

F

Fengqi You

F

Feng Gao