| Literature DB >> 27973891 |
Cristina Besleaga1, Laura Elena Abramiuc1,2, Viorica Stancu1, Andrei Gabriel Tomulescu1, Marian Sima1, Liliana Trinca1, Neculai Plugaru1, Lucian Pintilie1, George Alexandru Nemnes2, Mihaiela Iliescu3, Halldor Gudfinnur Svavarsson4, Andrei Manolescu4, Ioana Pintilie1.
Abstract
We monitored the evolution in time of pinhole-free structures based on FTO/TiO2/CH3NH3PbI2.6Cl0.4 layers, with and without spiro-OMeTAD and counter electrodes (Ag, Mo/Ag, and Au), aged at 24 °C in a dark nitrogen atmosphere. In the absence of electrodes, no degradation occurs. While devices with Au show only a 10% drop in power conversion efficiency, remaining stable after a further overheating at 70 °C, >90% is lost when using Ag, with the process being slower for Mo/Ag. We demonstrate that iodine is dislocated by the electric field between the electrodes, and this is an intrinsic cause for electromigration of I- from the perovskite until it reaches the anode. The iodine exhaustion in the perovskite layer is produced when using Ag electrodes, and AgI is formed. We hypothesize that in the presence of Au the iodine migration is limited due to the buildup of I- negative space charge accumulated at the perovskite-OMeTAD interface.Entities:
Year: 2016 PMID: 27973891 DOI: 10.1021/acs.jpclett.6b02375
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475