| Literature DB >> 30642163 |
Fengshuo Zu1,2, Patrick Amsalem1, David A Egger3,4, Rongbin Wang1,5, Christian M Wolff6, Honghua Fang7, Maria Antonietta Loi7, Dieter Neher6, Leeor Kronik4, Steffen Duhm5, Norbert Koch1,2,5.
Abstract
Photovoltaic cells based on halide perovskites, possessing remarkably high power conversion efficiencies have been reported. To push the development of such devices further, a comprehensive and reliable understanding of their electronic properties is essential but presently not available. To provide a solid foundation for understanding the electronic properties of polycrystalline thin films, we employ single-crystal band structure data from angle-resolved photoemission measurements. For two prototypical perovskites (CH3NH3PbBr3 and CH3NH3PbI3), we reveal the band dispersion in two high-symmetry directions and identify the global valence band maxima. With these benchmark data, we construct "standard" photoemission spectra from polycrystalline thin film samples and resolve challenges discussed in the literature for determining the valence band onset with high reliability. Within the framework laid out here, the consistency of relating the energy level alignment in perovskite-based photovoltaic and optoelectronic devices with their functional parameters is substantially enhanced.Entities:
Year: 2019 PMID: 30642163 DOI: 10.1021/acs.jpclett.8b03728
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475