paper

Imaging the Long Transport Lengths of Photo-generated Carriers in Oriented Perovskite Films

arXiv:1610.06165 · doi:10.1021/acs.nanolett.6b04235

Abstract

Organometal halide perovskite has emerged as a promising material for solar cells and optoelectronics. Although the long diffusion length of photo-generated carriers is believed to be a critical factor responsible for the material's high efficiency in solar cells, a direct study of carrier transport over long distances in organometal halide perovskites is still lacking. We fabricated highly oriented crystalline CHNHPbI (MAPbI) thin film lateral transport devices with long channel length (~ 120 m). By performing spatially scanned photocurrent imaging measurements with local illumination, we directly show that the perovskite films prepared here have very long transport lengths for photo-generated carriers, with a minority carrier (electron) diffusion length on the order of 10 m. Our approach of applying scanning photocurrent microscopy to organometal halide perovskites may be further used to elucidate the carrier transport processes and vastly different carrier diffusion lengths (~ 100 nm to 100 m) in different types of organometal halide perovskites.

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