锑
材料科学
硫化物
硫化铅
奥斯特瓦尔德成熟
兴奋剂
光电子学
太阳能电池
光伏系统
能量转换效率
化学工程
纳米技术
冶金
量子点
工程类
生态学
生物
作者
Jin‐Rui Cai,Zi‐Heng Huang,Wenfei Huang,Lingjie Liu,Hu Li,Limei Lin,Ya‐Lu Zhan,Yingsen Xia,Siyu Chen,Guilin Chen
出处
期刊:Small
[Wiley]
日期:2024-12-01
标识
DOI:10.1002/smll.202407246
摘要
Abstract Antimony sulfide (Sb 2 S 3 ) is regarded as one of the potential candidates for the next generation of photovoltaic absorber due to its excellent photoelectric properties. However, the selection and optimization of the hole transport layer (HTL) is still a major challenge for efficiency breakthrough of the Sb 2 S 3 solar cells. In this work, lead sulfide (PbS) is deposited as a HTL of the Sb 2 S 3 device by thermal evaporation for the first time. A high quality PbS films is conformally coated on the Sb 2 S 3 rear surface by regulating the feeding amount, which thanks to the mass transfer mechanism of Ostwald ripening by scrutinizing the film growth kinetics. Meanwhile, both the valence band maximum (VBM) and Fermi levels are shifted down by a deliberate oxygen doping under a low vacuum ambient, which effectively reduces the offset between Sb 2 S 3 and carbon electrode and then accelerates hole collection. Finally, it delivers an impressive photovoltaic conversion efficiency of 6.63% for carbon‐based Sb 2 S 3 solar cells, coupled with a V oc of 779 mV, J sc of 14.9 mA cm −2 and FF of 57.13%, which is 13% higher than that under high vacuum condition.
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