Strain-activated light-induced halide segregation in mixed-halide perovskite solids

Author:

Zhao YichengORCID,Miao Peng,Elia Jack,Hu Huiying,Wang Xiaoxia,Heumueller ThomasORCID,Hou YiORCID,Matt Gebhard J.ORCID,Osvet Andres,Chen Yu-Ting,Tarragó Mariona,de Ligny Dominique,Przybilla Thomas,Denninger Peter,Will JohannesORCID,Zhang Jiyun,Tang Xiaofeng,Li NingORCID,He Chenglin,Pan AnlianORCID,Meixner Alfred J.ORCID,Spiecker ErdmannORCID,Zhang DaiORCID,Brabec Christoph J.ORCID

Abstract

AbstractLight-induced halide segregation limits the bandgap tunability of mixed-halide perovskites for tandem photovoltaics. Here we report that light-induced halide segregation is strain-activated in MAPb(I1−xBrx)3 with Br concentration below approximately 50%, while it is intrinsic for Br concentration over approximately 50%. Free-standing single crystals of CH3NH3Pb(I0.65Br0.35)3 (35%Br) do not show halide segregation until uniaxial pressure is applied. Besides, 35%Br single crystals grown on lattice-mismatched substrates (e.g. single-crystal CaF2) show inhomogeneous segregation due to heterogenous strain distribution. Through scanning probe microscopy, the above findings are successfully translated to polycrystalline thin films. For 35%Br thin films, halide segregation selectively occurs at grain boundaries due to localized strain at the boundaries; yet for 65%Br films, halide segregation occurs in the whole layer. We close by demonstrating that only the strain-activated halide segregation (35%Br/45%Br thin films) could be suppressed if the strain is properly released via additives (e.g. KI) or ideal substrates (e.g. SiO2).

Funder

Alexander von Humboldt-Stiftung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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