Spatial-temporal spectroscopy characterizations and electronic structure of methylammonium perovskites

TitleSpatial-temporal spectroscopy characterizations and electronic structure of methylammonium perovskites
Publication TypeJournal Article
Year of Publication2018
AuthorsLiu, Z, Bhamu, KC, Luo, L, Shah, S, Park, J-M, Cheng, D, Long, M, Biswas, R, Fungara, F, Shiner, R, Shiner, J, Vela, J, Wang, J
JournalMRS Communications
Volume8
Issue3
Pagination961-969
Date PublishedSEP
Type of ArticleArticle
Abstract

Using time-resolved laser-scanning confocal microscopy and ultrafast optical pump/THz probe spectroscopy, we measure photoluminescence (PL) and THz-conductivity in perovskite micro-crystals and films. PL quenching and lifetime variations occur from local heterogeneity. Ultrafast THz-spectra measure sharp quantum transitions from excitonic Rydberg states, providing weakly bound excitons with a binding energy of similar to 13.5 meV at low temperatures. Ab-initio electronic structure calculations give a direct band gap of 1.64 eV, a dielectric constant of similar to 18, heavy electrons, and light holes, resulting in weakly bound excitons, consistent with the binding energies from the experiment. The complementary spectroscopy and simulations reveal fundamental insights into perovskite light-matter interactions.

DOI10.1557/mrc.2018.114
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

3.008

Divison category: 
Physical and Materials Chemistry

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