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Seok, Sang Il
Laboratory for Energy Harvesting Materials and Systems
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Tailoring of Electron-Collecting Oxide Nanoparticulate Layer for Flexible Perovskite Solar Cells

Author(s)
Shin, Seong SikYang, Woon SeokYeom, Eun JooLee, Seon JooJeon, Nam JJoo, Young-ChangPark, Ik JaeNoh, Jun HongSeok, Sang Il
Issued Date
2016-05
DOI
10.1021/acs.jpclett.6b00295
URI
https://scholarworks.unist.ac.kr/handle/201301/19683
Fulltext
http://pubs.acs.org/doi/abs/10.1021/acs.jpclett.6b00295
Citation
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, v.7, no.10, pp.1845 - 1851
Abstract
Low-temperature-processed perovskite solar cells (PSCs), especially those fabricated on flexible substrates, exhibit device performance that is worse than that of high-temperature-processed PSCs. One of the main reasons for the inferior performance of low-temperature-processed PSCs is the loss of photogenerated electrons in the electron collection layer (ECL) or related interfaces, i.e.; indium tin oxide/ECL and ECL/perovskite. Here, we report that tailoring of the energy level and electron transporting ability in oxide ECLs using Zn2SnO4 nanoparticles and quantum dots notably minimizes the loss of photogenerated electrons in the low-temperature-fabricated flexible PSC. The proposed ECL with methylammonium lead halide [MAPb(I0.9Br0.1)3] leads to fabrication of significantly improved flexible PSCs with steady-state power conversion efficiency of 16.0% under AM 1.5G illumination of 100 mW cm-2 intensity. These results provide an effective method for fabricating high-performance, low-temperature solution-processed flexible PSCs.
Publisher
AMER CHEMICAL SOC
ISSN
1948-7185
Keyword
EFFICIENTPERFORMANCEFABRICATION

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