Efficient perovskite/Cu(In,Ga)Se2 tandem solar cells with a composite intermediate recombination layer

W Wang Li J Junjun Zhang L Li Zeng (The Institute for Advanced Studies (IAS), College of Chemistry and Molecular Sciences) W Wanhai Wang Z Zhou Fang X Xinxing Liu Z Zengyang Ma Y Yitian Zhang H Hui Yan C Chen Shen (Department of Laboratory Medicine, Sichuan Medical Laboratory Clinical Medicine Research Center) Z Zhuo Xue J Jingyi Zhu Q Qiren Luo C Chang Liu R Ruixuan Jiang T Tongle Bu W Weihua Tang J Jianmin Li S Sheng Wang J Junbo Gong (School of Chemical Engineering and Technology) X Xudong Xiao (Department of Chemistry and Biochemistry)

Abstract

Abstract Monolithic perovskite/Cu(In,Ga)Se 2 (CIGS) tandem solar cells offer unique advantages among tandem configurations, including optimal bandgap pairing, all-thin-film architecture, superior radiation hardness, and exceptional stability. Despite their potential, challenges remain in optimizing efficiency and stability, particularly in the intermediate recombination layer (IRL) that connects subcells. This study addresses these challenges by developing a high-performance IRL using a composite structure comprising Al:ZnO/Au/NiO x /[4-(7H-dibenzo[c,g]carbazol-7-yl)butyl] phosphonic acid (4PADCB). The hybrid NiO x /4PADCB hole transport layer enhances interface trap passivation, optimizes band alignment, and improves minority carrier extraction, while the ultrathin Au layer significantly boosts the majority carrier recombination rate. With well-engineered subcells, our champion perovskite/CIGS tandem device achieved a record PCE of 28.04% at 0.51 cm 2 area and 30.71% at 0.15 cm 2 area (30.1% cross-verified by an external organization), with an exceptional fill factor of 80.9%, alongside outstanding photo- and thermal-stability. This work establishes monolithic perovskite/CIGS tandems as competitive with leading perovskite/Si (34.9%) and perovskite/perovskite (30.1%) technologies, providing a scalable, versatile framework for next-generation photovoltaics.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

W

Wang Li

J

Junjun Zhang

L

Li Zeng

The Institute for Advanced Studies (IAS), College of Chemistry and Molecular Sciences

W

Wanhai Wang

Z

Zhou Fang

X

Xinxing Liu

Z

Zengyang Ma

Y

Yitian Zhang

H

Hui Yan

C

Chen Shen

Department of Laboratory Medicine, Sichuan Medical Laboratory Clinical Medicine Research Center

Z

Zhuo Xue

J

Jingyi Zhu

Q

Qiren Luo

C

Chang Liu

R

Ruixuan Jiang

T

Tongle Bu

W

Weihua Tang

J

Jianmin Li

S

Sheng Wang

J

Junbo Gong

School of Chemical Engineering and Technology

X

Xudong Xiao

Department of Chemistry and Biochemistry