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Spatial Localization of Excitons and Charge Carriers in Hybrid Perovskite Thin Films...

by Mary Jane Simpson, Benjamin L Doughty, Bin Yang, Kai Xiao, Yingzhong Ma
Publication Type
Journal
Journal Name
Journal of Physical Chemistry Letters
Publication Date
Page Numbers
3041 to 3047
Volume
6
Issue
15

The fundamental photophysics underlying the remarkably high power conversion efficiency of organic-inorganic hybrid perovskite-based solar cells has been increasingly studied using complementary spectroscopic techniques. However, the spatially heterogeneous polycrystalline morphology of the photoactive layers owing to the presence of distinct crystalline grains has been generally neglected in optical measurements and therefore the reported results are typically averaged over hundreds or even thousands of such grains. Here, we apply femtosecond transient absorption microscopy to spatially and temporally probe ultrafast electronic excited-state dynamics in pristine methylammonium lead tri-iodide (CH3NH3PbI3) thin films and composite structures. We found that the electronic excited-state relaxation kinetics are extremely sensitive to the sample location probed, which was manifested by position-dependent decay timescales and transient signals. Analysis of transient absorption kinetics acquired at distinct spatial positions enabled us to identify contributions of excitons and free charge carriers.