材料科学
钙钛矿(结构)
能量转换效率
纳米技术
传输层
光电子学
多孔性
载流子
图层(电子)
环境友好型
钝化
泄漏(经济)
氧化物
多孔介质
铅(地质)
吸附
高效能源利用
太阳能
缓冲器(光纤)
钙钛矿太阳能电池
工程物理
光伏
纳米
电荷(物理)
作者
Xiaolong Cao,Zhengyan He,Hai-Yan Sun,Tiantian Lv,Zhihang Zhang,Qi Zhang,Changlin Yao,Hai Zhong,Shaowei Zhang,Shaowei Zhang,Shufang Zhang,Shufang Zhang,Mei-Ling Feng,Xiaolong Cao,Zhengyan He,Hai-Yan Sun,Tiantian Lv,Zhihang Zhang,Qi Zhang,Changlin Yao
出处
期刊:Small
[Wiley]
日期:2025-11-14
卷期号:: e11905-e11905
标识
DOI:10.1002/smll.202511905
摘要
Abstract Although interface engineering has become a key strategy for enhancing the efficiency and stability of perovskite solar cells (PSCs), existing interface materials still struggle to achieve a balance between defect passivation, charge transport, and suppression of lead leakage. In this study, the barium‐zinc‐antimony oxide cluster‐based material H 1.03 Ba 2.485 (H 2 O) 15 [Zn 2 Sb 12 (μ 3 ‐O) 8 (μ 4 ‐O) 5 (tta) 6 ]·8H 2 O ( FJSM‐BZA ) is introduced as a multifunctional porous layer at the SnO 2 /perovskite interface. By providing charge transport pathways and in situ suppression of lead leakage, this material simultaneously enhances device performance, stability, and environmental safety. Experimental results show that FJSM‐BZA suppresses the intrinsic defects of SnO 2 , optimizes the interface energy level alignment, enhances the built‐in electric field, and promotes charge extraction. At the same time, it significantly passivates defects in the perovskite layer and improves film quality. The introduction of FJSM‐BZA‐modified n‐i‐p devices ultimately achieved a power conversion efficiency (PCE) of 25.72% (0.09 cm 2 ). Unsealed modified devices maintained over 90% of their initial efficiency after 2000 h of aging in air or 600 h of continuous heating at 85 °C. Moreover, the unique lead adsorption mechanism exhibited by FJSM‐BZA effectively suppresses lead leakage, thereby enhancing the environmental safety of PSCs. This study provides a new strategy for the development of efficient, stable, and environmentally friendly PSCs.
科研通智能强力驱动
Strongly Powered by AbleSci AI