Publication | Closed Access
Transparent Electrodes Consisting of a Surface‐Treated Buffer Layer Based on Tungsten Oxide for Semitransparent Perovskite Solar Cells and Four‐Terminal Tandem Applications
56
Citations
46
References
2020
Year
EngineeringOrganic Solar CellHalide PerovskitesOptoelectronic DevicesPhotovoltaicsTransparent Electrodes ConsistingSolar Cell StructuresMaterials ScienceElectrical EngineeringPerovskite MaterialsTungsten Oxide SurfaceLead-free PerovskitesFour‐terminal Tandem ApplicationsNiobium OxideTransparent ElectrodesPerovskite Solar CellTungsten OxideThin FilmsSolar CellsSolar Cell Materials
Abstract For semitransparent devices with n‐i‐p structures, a metal oxide buffer material is commonly used to protect the organic hole transporting layer from damage due to sputtering of the transparent conducting oxide. Here, a surface treatment approach is addressed for tungsten oxide‐based transparent electrodes through slight modification of the tungsten oxide surface with niobium oxide. Incorporation of this transparent electrode technique to the protective buffer layer significantly recovers the fill factor from 70.4% to 80.3%, approaching fill factor values of conventional opaque devices, which results in power conversion efficiencies over 18% for the semitransparent perovskite solar cells. Application of this approach to a four‐terminal tandem configuration with a silicon bottom cell is demonstrated.
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