The dynamics of methylammonium ions in hybrid organic–inorganic perovskite solar cells

Author:

Leguy Aurelien M. A.,Frost Jarvist MooreORCID,McMahon Andrew P.,Sakai Victoria Garcia,Kockelmann W.,Law ChunHung,Li Xiaoe,Foglia Fabrizia,Walsh AronORCID,O’Regan Brian C.,Nelson Jenny,Cabral João T.ORCID,Barnes Piers R. F.

Abstract

Abstract Methylammonium lead iodide perovskite can make high-efficiency solar cells, which also show an unexplained photocurrent hysteresis dependent on the device-poling history. Here we report quasielastic neutron scattering measurements showing that dipolar CH3NH3 + ions reorientate between the faces, corners or edges of the pseudo-cubic lattice cages in CH3NH3PbI3 crystals with a room temperature residence time of ∼14 ps. Free rotation, π-flips and ionic diffusion are ruled out within a 1–200-ps time window. Monte Carlo simulations of interacting CH3NH3 + dipoles realigning within a 3D lattice suggest that the scattering measurements may be explained by the stabilization of CH3NH3 + in either antiferroelectric or ferroelectric domains. Collective realignment of CH3NH3 + to screen a device’s built-in potential could reduce photovoltaic performance. However, we estimate the timescale for a domain wall to traverse a typical device to be ∼0.1–1 ms, faster than most observed hysteresis.

Publisher

Springer Science and Business Media LLC

Subject

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

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