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Open-circuit and short-circuit loss management in wide-gap perovskite p-i-n solar cells

Authors :
Caprioglio, P
Smith, JA
Oliver, RDJ
Dasgupta, A
Choudhary, S
Farrar, MD
Ramadan, AJ
Lin, Y-H
Christoforo, MG
Ball, JM
Diekmann, J
Thiesbrummel, J
Zaininger, K-A
Shen, X
Johnston, MB
Neher, D
Stolterfoht, M
Snaith, HJ
Publication Year :
2023
Publisher :
Springer Nature, 2023.

Abstract

In this work, we couple theoretical and experimental approaches to understand and reduce the losses of wide bandgap Br-rich perovskite pin devices at open-circuit voltage (VOC) and short-circuit current (JSC) conditions. A mismatch between the internal quasi-Fermi level splitting (QFLS) and the external VOC is detrimental for these devices. We demonstrate that modifying the perovskite top-surface with guanidinium-Br and imidazolium-Br forms a low-dimensional perovskite phase at the n-interface, suppressing the QFLS-VOC mismatch, and boosting the VOC. Concurrently, the use of an ionic interlayer or a self-assembled monolayer at the p-interface reduces the inferred field screening induced by mobile ions at JSC, promoting charge extraction and raising the JSC. The combination of the n- and p-type optimizations allows us to approach the thermodynamic potential of the perovskite absorber layer, resulting in 1 cm2 devices with performance parameters of VOCs up to 1.29 V, fill factors above 80% and JSCs up to 17 mA/cm2, in addition to a thermal stability T80 lifetime of more than 3500 h at 85 °C.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....316b24fed32c471c184594faaadb221b