| Literature DB >> 33712623 |
Kanishka Kobbekaduwa1, Shreetu Shrestha2, Pan Adhikari1, Exian Liu1, Lawrence Coleman1, Jianbing Zhang3, Ying Shi4, Yuanyuan Zhou5, Yehonadav Bekenstein6, Feng Yan7, Apparao M Rao1, Hsinhan Tsai2, Matthew C Beard8, Wanyi Nie9, Jianbo Gao10.
Abstract
We in-situ observe the ultrafast dynamics of trapped carriers in organic methyl ammonium lead halide perovskite thin films by ultrafast photocurrent spectroscopy with a sub-25 picosecond time resolution. Upon ultrafast laser excitation, trapped carriers follow a phonon assisted tunneling mechanism and a hopping transport mechanism along ultra-shallow to shallow trap states ranging from 1.72-11.51 millielectronvolts and is demonstrated by time-dependent and independent activation energies. Using temperature as an energetic ruler, we map trap states with ultra-high energy resolution down to < 0.01 millielectronvolt. In addition to carrier mobility of ~4 cm2V-1s-1 and lifetime of ~1 nanosecond, we validate the above transport mechanisms by highlighting trap state dynamics, including trapping rates, de-trapping rates and trap properties, such as trap density, trap levels, and capture-cross sections. In this work we establish a foundation for trap dynamics in high defect-tolerant perovskites with ultra-fast temporal and ultra-high energetic resolution.Entities:
Year: 2021 PMID: 33712623 DOI: 10.1038/s41467-021-21946-2
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919