A dual-functional additive for crystallization regulated and defect passivated stable inverted perovskite solar cells

I Ibrahim Albrahee (College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,) H Haibibu Aziguli (College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,) T Tengfei Zhang L Liwei Chen (School of Chemistry and Chemical, In situ Center for Physical Science) H Hailong Li Y Yue Yu J Jiangzhao Chen J Juan Hou (College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,)

Abstract

The main problems holding back inverted perovskite solar cells (PSCs) are poor crystal formation and too many defects inside the perovskite layer. We address both issues by introducing 4-aminobutylphosphonic acid, which effectively releases residual tensile stress and passivates film defects, leading to enhanced efficiency and stability. We report 4-aminobutylphosphonic acid as a multifunctional additive where the phosphonic acid (–PO3H2) and amine (–NH2) groups coordinatively passivate undercoordinated Pb2+ and I− vacancies, as supported by GIXRD measurements showing 64% reduction in residual tensile stress, and time-resolved photoluminescence shows enhanced carrier lifetime. The optimized devices achieve a champion power conversion efficiency (PCE) of 24.1% and retain 85% of its initial PCEs after 840 h under 1-sun illumination at 65 °C. This molecular engineering approach provides a facile route to concurrently boost efficiency and stability in inverted PSCs.

Article Details

Volume / Issue Vol. 128, Issue 10
Published March 09, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (8)

I

Ibrahim Albrahee

College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,

H

Haibibu Aziguli

College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,

T

Tengfei Zhang

L

Liwei Chen

School of Chemistry and Chemical, In situ Center for Physical Science

H

Hailong Li

Y

Yue Yu

J

Jiangzhao Chen

J

Juan Hou

College of Sciences/State Key Laboratory of Advanced Energy Storage Materials and Technology, Shihezi University 1 , Xinjiang, Shihezi 832003,