Residential College | false |
Status | 已發表Published |
Ultra‐Long Carrier Lifetime Exceeding 20 μs in Lead Halide Perovskite Film Enable Efficient Solar Cells | |
Jiahao Guo1; Bingzhe Wang2; Di Lu1; Ting Wang1; Tingting Liu1; Rui Wang1; Xiyue Dong1; Tong Zhou1; Nan Zheng3; Qiang Fu1; Zengqi Xie3; Xiangjian Wan1; Xing GC(邢貴川)2; Yongsheng Chen1; Yongsheng Liu1 | |
2023-05-28 | |
Source Publication | Advanced Materials |
ISSN | 1521-4095 |
Volume | 35Issue:28Pages:2212126 |
Abstract | The carrier lifetime is one of the key parameters for perovskite solar cells (PSCs). However, it is still a great challenge to achieve long carrier lifetimes in perovskite films that are comparable with perovskite crystals owning to the large trap density resulting from the unavoidable defects in grain boundaries and surfaces. Here, by regulating the electronic structure with the developed 2-thiopheneformamidinium bromide (ThFABr) combined with the unique film structure of 2D perovskite layer caped 2D/3D polycrystalline perovskite film, an ultralong carrier lifetime exceeding 20 µs and carrier diffusion lengths longer than 6.5 µm are achieved. These excellent properties enable the ThFA-based devices to yield a champion efficiency of 24.69% with a minimum VOC loss of 0.33 V. The unencapsulated device retains ≈95% of its initial efficiency after 1180 h by max power point (MPP) tracking under continuous light illumination. This work provides important implications for structured 2D/(2D/3D) perovskite films combined with unique FA-based spacers to achieve ultralong carrier lifetime for high-performance PSCs and other optoelectronic applications. |
Keyword | Perovskite Solar Cells Spectroscopy |
DOI | 10.1002/adma.202212126 |
URL | View the original |
Language | 英語English |
WOS Research Area | Materials Science ; Spectroscopy |
WOS ID | WOS:000995952500001 |
Publisher | Wiley-VCH GmbH, Weinheim |
Scopus ID | 2-s2.0-85160230148 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | DEPARTMENT OF PHYSICS AND CHEMISTRY INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Corresponding Author | Xing GC(邢貴川); Yongsheng Chen; Yongsheng Liu |
Affiliation | 1.Nankai University 2.Joint Key Laboratory of the Ministry of EducationInstitute of Applied Physics and Materials EngineeringUniversity of Macau 3.SouthChinaUniversityofTechnology |
Corresponding Author Affilication | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Recommended Citation GB/T 7714 | Jiahao Guo,Bingzhe Wang,Di Lu,et al. Ultra‐Long Carrier Lifetime Exceeding 20 μs in Lead Halide Perovskite Film Enable Efficient Solar Cells[J]. Advanced Materials, 2023, 35(28), 2212126. |
APA | Jiahao Guo., Bingzhe Wang., Di Lu., Ting Wang., Tingting Liu., Rui Wang., Xiyue Dong., Tong Zhou., Nan Zheng., Qiang Fu., Zengqi Xie., Xiangjian Wan., Xing GC., Yongsheng Chen., & Yongsheng Liu (2023). Ultra‐Long Carrier Lifetime Exceeding 20 μs in Lead Halide Perovskite Film Enable Efficient Solar Cells. Advanced Materials, 35(28), 2212126. |
MLA | Jiahao Guo,et al."Ultra‐Long Carrier Lifetime Exceeding 20 μs in Lead Halide Perovskite Film Enable Efficient Solar Cells".Advanced Materials 35.28(2023):2212126. |
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