Importance of Low Humidity and Selection of Halide Ions of Octylammonium Halide in 2D–3D Perovskite Solar Cells Fabricated in Air

Author:

Kwon Su Yeon12,Kang Byungsoo1,Won Jong Hyeon1,Lee Chae Young1,Hwang Kahee1,Kim Hong Hee3,Park Donghee3,Choi Won Kook3,Kim In Soo4,Kim Gee Yeong1,Jang Yoon Hee1,Lee Phillip1,Im Sang Hyuk2,Kim Taehee1ORCID

Affiliation:

1. Advanced Photovoltaics Research Center Korea Institute of Science and Technology (KIST) Seoul 02792 Republic of Korea

2. Department of Chemical and Biological Engineering Korea University 145 Anam‐ro, Seongbuk‐gu Seoul 02841 Republic of Korea

3. Center for Opto‐Electronic Materials and Devices Korea Institute of Science and Technology (KIST) Seoul 02792 Republic of Korea

4. Nanophotonics Research Center Korea Institute of Science and Technology (KIST) Seoul 02792 Republic of Korea

Abstract

AbstractAir fabrication of efficient and stable perovskite solar cells with substantial reproducibility is of importance for commercialization of perovskite solar cells. There has been little consensus on which halide is the best selection for thin 2D perovskite layer on 3D perovskite when processing in ambient air. In this work, the influence of humidity and halide ions in alkylammonium halide (OAX)‐treated perovskite layer on photovoltaic performance is investigated. The authors find that a combination of high humidity and the presence of chloride ions can induce the deprotonation of methylammonium (MA+) ions. With X‐ray diffraction, cross‐sectional scanning electron microscope, Fourier‐transform infrared spectroscopy, the authors elucidate that the deprotonation reaction in the octylammonium chloride (OACl)‐treated perovskite layer makes MA+ ions (CH3NH3+) volatile MA (CH3NH2), which results in void volumes and defects in the bulk of perovskite layer as well as at the interface. The defective perovskite solar cells induced by the deprotonation reaction have the suppressed hole transfer at the interface between the perovskite layer and the hole transport layer, yielding the reduced internal quantum efficiency and JSC. Space charge‐limited current analysis reveals that the reduced VOC is caused by the high trap density estimated from VTFL of hole‐only devices.

Funder

Ministry of Agriculture, Food and Rural Affairs

Rural Development Administration

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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