2023
DOI: 10.1002/solr.202300423
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Self‐Doping of the Transport Layers Decreases the Bimolecular Recombination by Reducing Static Disorder

Abstract: Electron‐transport layers (ETLs) have a crucial role in the solar cells’ performance. Generally, ETLs are characterized in terms of the interface properties and conductivity rather than their effect on the photoactive layer. Herein, two ETLs, 2,9‐bis(3‐((3‐(dimethylamino)propyl)amino)propyl)anthra[2,1,9‐def:6,5,10‐d′e′f′]diisoquinoline‐1,3,8,10(2H,9H)‐tetraone (PDINN) and 2,9‐bis[3‐(dimethyloxidoamino)propyl]anthra[2,1,9‐def:6,5,10‐d′e′f′]diisoquinoline‐1,3,8,10(2H,9H)‐tetrone, are compared in the conventional… Show more

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“…[59] The sign of doping for individual ETLs was definitively confirmed using Hall measurements. [80] In the case of devices, the Mott-Schottky analysis indicated the rise in the doping density from below 1 × 10 15 cm 3 for the device without an ETL to above 2 × 10 15 cm 3 for the device with PDINO and above 5 × 10 15 cm 3 for the device with PDINN.…”
Section: Capacitance-voltage Analysis Of Pm6:y6 Solar Cells In the Darkmentioning
confidence: 94%
“…[59] The sign of doping for individual ETLs was definitively confirmed using Hall measurements. [80] In the case of devices, the Mott-Schottky analysis indicated the rise in the doping density from below 1 × 10 15 cm 3 for the device without an ETL to above 2 × 10 15 cm 3 for the device with PDINO and above 5 × 10 15 cm 3 for the device with PDINN.…”
Section: Capacitance-voltage Analysis Of Pm6:y6 Solar Cells In the Darkmentioning
confidence: 94%