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Stabilized tilted-octahedra halide perovskites inhibit local formation of performance-limiting phases

Authors :
Doherty, Tiarnan A. S.
Nagane, Satyawan
Kubicki, Dominik J.
Jung, Young-Kwang
Johnstone, Duncan N.
Iqbal, Affan N.
Guo, Dengyang
Frohna, Kyle
Danaie, Mohsen
Tennyson, Elizabeth M.
Macpherson, Stuart
Abfalterer, Anna
Anaya, Miguel
Chiang, Yu-Hsien
Crout, Phillip
Ruggeri, Francesco Simone
Collins, Sean
Grey, Clare P.
Walsh, Aron
Midgley, Paul A.
Stranks, Samuel D.
Doherty, Tiarnan AS [0000-0003-1150-4012]
Nagane, Satyawan [0000-0002-1146-4754]
Kubicki, Dominik J [0000-0002-9231-6779]
Jung, Young-Kwang [0000-0003-3848-8163]
Johnstone, Duncan N [0000-0003-3663-3793]
Iqbal, Affan N [0000-0002-7582-9011]
Guo, Dengyang [0000-0002-2124-6208]
Frohna, Kyle [0000-0002-2259-6154]
Danaie, Mohsen [0000-0002-9325-7571]
Tennyson, Elizabeth M [0000-0003-0071-8445]
Macpherson, Stuart [0000-0003-3758-1198]
Abfalterer, Anna [0000-0002-9423-8671]
Anaya, Miguel [0000-0002-0384-5338]
Chiang, Yu-Hsien [0000-0003-2767-3056]
Crout, Phillip [0000-0001-5754-0938]
Ruggeri, Francesco Simone [0000-0002-1232-1907]
Collins, Sean [0000-0002-5151-6360]
Grey, Clare P [0000-0001-5572-192X]
Walsh, Aron [0000-0001-5460-7033]
Midgley, Paul A [0000-0002-6817-458X]
Stranks, Samuel D [0000-0002-8303-7292]
Apollo - University of Cambridge Repository
Source :
Science 374 (2021) 6575, Science, Science, 374(6575), 1598-1605
Publication Year :
2021
Publisher :
American Association for the Advancement of Science, 2021.

Abstract

Efforts to stabilize photoactive formamidinium (FA)–based halide perovskites for perovskite photovoltaics have focused on the growth of cubic formamidinium lead iodide (a-FAPbI3) phases by empirically alloying with cesium, methylammonium (MA) cations, or both. We show that such stabilized FA-rich perovskites are noncubic and exhibit ~2° octahedral tilting at room temperature. This tilting, resolvable only with the use of local nanostructure characterization techniques, imparts phase stability by frustrating transitions from photoactive to hexagonal phases. Although the bulk phase appears stable when examined macroscopically, heterogeneous cation distributions allow microscopically unstable regions to form; we found that these transitioned to hexagonal polytypes, leading to local trap-assisted performance losses and photoinstabilities. Using surface-bound ethylenediaminetetraacetic acid, we engineered an octahedral tilt into pure a-FAPbI3 thin films without any cation alloying. The templated photoactive FAPbI3 film was extremely stable against thermal, environmental, and light stressors.

Details

Language :
English
ISSN :
00368075
Database :
OpenAIRE
Journal :
Science 374 (2021) 6575, Science, Science, 374(6575), 1598-1605
Accession number :
edsair.doi.dedup.....46830ce335a6d47fd15a4af0a1a25772