Universal in situ oxide-based ABX3-structured seeds for templating halide perovskite growth in All-perovskite tandems

W Weiqing Chen S Shun Zhou H Hongsen Cui W Weiwei Meng (Key Laboratory of Functional Materials and Devices for Special Environments of CAS, Xinjiang Key Laboratory of Electronic Information Materials and Devices) H Hongling Guan G Guojun Zeng Y Yansong Ge S Sengke Cheng Z Zixi Yu D Dexin Pu L Lishuai Huang J Jin Zhou (Department of Oncology Sichuan Cancer Hospital Chengdu China) G Guoyi Chen G Guang Li H Hongyi Fang Z Zhiqiu Yu H Hai Zhou G Guojia Fang W Weijun Ke

Abstract

Abstract Precise control over halide perovskite crystallization is pivotal for realizing efficient solar cells. Here, we introduce a strategy utilizing in-situ-formed oxide-based ABX3-structured seeds to regulate perovskite crystallization and growth. Introducing potassium stannate into perovskite precursors triggers a spontaneous reaction with lead iodide, producing potassium iodide and lead stannate. Potassium iodide effectively passivates defects, while PbSnO3 (ABX3-structured), exhibiting a 98% lattice match, acts as a template and seed. This approach facilitates pre-nucleation cluster formation, preferential grain orientation, and the elimination of intermediate-phase processes in perovskite films. Incorporating potassium stannate into both the perovskite precursors and the buried hole transport layers enables single-junction 1.25 eV-bandgap Sn-Pb perovskite solar cells to achieve a steady-state efficiency of 23.12% and enhanced stability. Furthermore, all-perovskite tandem devices yield efficiencies of 28.12% (two-terminal) and 28.81% (four-terminal). This versatile templating method also boosts the performance of 1.77 eV and 1.54 eV-bandgap cells, underscoring its broad applicability.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

W

Weiqing Chen

S

Shun Zhou

H

Hongsen Cui

W

Weiwei Meng

Key Laboratory of Functional Materials and Devices for Special Environments of CAS, Xinjiang Key Laboratory of Electronic Information Materials and Devices

H

Hongling Guan

G

Guojun Zeng

Y

Yansong Ge

S

Sengke Cheng

Z

Zixi Yu

D

Dexin Pu

L

Lishuai Huang

J

Jin Zhou

Department of Oncology Sichuan Cancer Hospital Chengdu China

G

Guoyi Chen

G

Guang Li

H

Hongyi Fang

Z

Zhiqiu Yu

H

Hai Zhou

G

Guojia Fang

W

Weijun Ke