Time-resolved imaging of non-diffusive carrier transport in long-lifetime halide perovskite thin films
Aravindan Sridharan, Nakita K. Noel, Hyeon Hwang, Soroush Hafezian,, Barry P. Rand, St\'ephane K\'ena-Cohen

TL;DR
This study uses time-resolved photoluminescence microscopy to directly observe carrier diffusion and recombination in hybrid perovskite films, revealing non-diffusive transport behaviors and their implications for photovoltaic efficiency.
Contribution
It provides the first direct measurement of ambipolar carrier diffusion and non-diffusive transport regimes in various high-efficiency perovskite films.
Findings
Diffusion coefficients vary significantly among different perovskite films.
Evidence of non-diffusive, regime-dependent carrier transport.
Higher carrier lifetime does not always mean longer diffusion lengths.
Abstract
Owing to their exceptional semiconducting properties, hybrid inorganic-organic perovskites show great promise as photovoltaic absorbers. In these materials, long-range diffusion of charge carriers allows for most of the photogenerated carriers to contribute to the photovoltaic efficiency. Here, time-resolved photoluminescence (PL) microscopy is used to directly probe ambipolar carrier diffusion and recombination kinetics in hybrid perovskites. This technique is applied to thin films of methylammonium lead tri-iodide MAPbI obtained with two different fabrication routes, methylammonium lead tribromide (MAPbBr), and an alloy of formamidinium lead tri-iodide (FAPbI) and methylammonium lead bromide FAMAPb(IBr_). Average diffusion coefficients in the films leading to the highest device efficiencies and longest lifetimes, i.e., in…
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Taxonomy
TopicsPerovskite Materials and Applications · Quantum Dots Synthesis And Properties · Chalcogenide Semiconductor Thin Films
