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◆ Science Advances2026-04-03· Kesterite

Quasi-epitaxial heterojunction interface reconstruction enables 11.96% certified efficiency in Cd-free Cu <sub>2</sub> ZnSnS <sub>4</sub> solar cells

Ping Luo, Shuo Chen, Guojie Chen, Muhammad Abbas, Zhenghua Su, Zhuanghao Zheng, Hongli Ma, Xianghua Zhang, Guangxing Liang

原始摘要(英文原文)· Original abstract
(CZTS) is a promising photovoltaic material with considerable potential for application in single-junction, multi-junction, and tandem solar cells. However, advancements in its certified power conversion efficiency (PCE) have remained slow, primarily due to severe interface recombination, which is a major limitation constraining the overall performance of CZTS solar cells. Here, we report an effective heterojunction interface engineering approach in which the CZTS/(Zn,Sn)O heterojunction is subjected to a controlled annealing treatment under dynamically flowing air atmosphere. This treatment induces Zn and Sn cation lattice diffusion to reconstruct a quasi-epitaxial contact at the intermediate interface. This reconstruction effectively suppresses defect-assisted interfacial carrier recombination and optimizes carrier dynamics by enhancing transport and collection efficiencies. Consequently, we achieved a highest certified efficiency of 11.96% for Cd-free, pure-sulfide CZTS solar cell (bandgap > 1.5 eV) without extrinsic cation alloying. This study provides insights into heterojunction interface optimization and the performance enhancement mechanism in the development of kesterite solar cells.
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Quasi-epitaxial heterojunction interface reconstruction enables 11.96% certified efficiency in Cd-free Cu <sub>2</sub> ZnSnS <sub>4</sub> solar cells — 科研速览 Science Skim