Comparison of Recombination Dynamics in CH3NH3PbBr3 and CH3NH3PbI3 Perovskite Films: Influence of Exciton Binding Energy

Yang Y, Yang M, Li Z, Crisp R, Zhu K, Beard MC (2015)


Publication Status: Published

Publication Type: Journal article

Publication year: 2015

Journal

Publisher: AMER CHEMICAL SOC

Book Volume: 6

Pages Range: 4688-4692

Journal Issue: 23

DOI: 10.1021/acs.jpclett.5b02290

Abstract

Understanding carrier recombination in semiconductors is a critical component when developing practical applications. Here we measure and compare the monomolecular, bimolecular, and trimolecular (Auger) recombination rate constants of CH3NH3PbBr3 and CH3NH3PbI3. The monomolecular and bimolecular recombination rate constants for both samples are limited by trap-assisted recombination. The bimolecular recombination rate constant for CH3NH3PbBr3 is similar to 3.3 times larger than that for CH3NH3PbI3 and both are in line with that found for radiative recombination in other direct-gap semiconductors. The Auger recombination rate constant is 4 times larger in lead-bromide-based perovskite compared with lead-iodide-based perovskite and does not follow the reduced Auger rate when the bandgap increases. The increased Auger recombination rate, which is enhanced by Coulomb interactions, can be ascribed to the larger exciton binding energy, similar to 40 meV, in CH3NH3PbBr3 compared with similar to 13 meV in CH3NH3PbI3.

Authors with CRIS profile

Involved external institutions

How to cite

APA:

Yang, Y., Yang, M., Li, Z., Crisp, R., Zhu, K., & Beard, M.C. (2015). Comparison of Recombination Dynamics in CH3NH3PbBr3 and CH3NH3PbI3 Perovskite Films: Influence of Exciton Binding Energy. Journal of Physical Chemistry Letters, 6(23), 4688-4692. https://dx.doi.org/10.1021/acs.jpclett.5b02290

MLA:

Yang, Ye, et al. "Comparison of Recombination Dynamics in CH3NH3PbBr3 and CH3NH3PbI3 Perovskite Films: Influence of Exciton Binding Energy." Journal of Physical Chemistry Letters 6.23 (2015): 4688-4692.

BibTeX: Download