High photovoltages and power conversion efciencies of perovskite solarcells(PSCs)can be realized by controlling the undesired nonradiative charge carrier ***,we introduce a judicious amount of guanidinium iodide into...
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High photovoltages and power conversion efciencies of perovskite solar cells(PSCs)can be realized by controlling the undesired nonradiative charge carrier ***,we introduce a judicious amount of guanidinium iodide into mixed-cation and mixed-halide perovskite flms to suppress the parasitic charge carrier recombination,which enabled the fabrication of>20%efcient and operationally stable PSCs yielding reproducible photovoltageas high as 1.20 *** introducing guanidinium iodide into the perovskite precursor solution,the bandgap of the resulting absorber material changed minimally;however,the nonradiative recombination diminished considerably as revealed by time-resolved photoluminescence and electroluminescence ***,using capacitance-frequency measurements,we were able to correlate the hysteresis features exhibited by the PSCs with interfacial charge *** study opens up a path to realize new record efciencies for PSCs based on guanidinium iodide doped perovskite flms.
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