Selected Electrochemical Properties of 4,4’-((1E,1’E)-((1,2,4-Thiadiazole-3,5-diyl)bis(azaneylylidene))bis(methaneylylidene))bis(N,N-di-p-tolylaniline) towards Perovskite Solar Cells with 14.4% Efficiency

Author:

Bogdanowicz Krzysztof ArturORCID,Jewłoszewicz Beata,Iwan Agnieszka,Dysz Karolina,Przybyl Wojciech,Januszko Adam,Marzec MonikaORCID,Cichy KacperORCID,Świerczek KonradORCID,Kavan LadislavORCID,Zukalová MarkétaORCID,Nadazdy Vojtech,Subair Riyas,Majkova Eva,Micusik Matej,Omastova MariaORCID,Özeren Mehmet Derya,Kamarás KatalinORCID,Heo Do Yeon,Kim Soo YoungORCID

Abstract

Planar perovskite solar cells were fabricated on F-doped SnO2 (FTO) coated glass substrates, with 4,4’-((1E,1’E)-((1,2,4-thiadiazole-3,5-diyl)bis(azaneylylidene))bis(methaneylylidene))bis(N,N-di-p-tolylaniline) (bTAThDaz) as hole transport material. This imine was synthesized in one step reaction, starting from commercially available and relatively inexpensive reagents. Electrochemical, optical, electrical, thermal and structural studies including thermal images and current-voltage measurements of the full solar cell devices characterize the imine in details. HOMO-LUMO of bTAThDaz were investigated by cyclic voltammetry (CV) and energy-resolved electrochemical impedance spectroscopy (ER-EIS) and were found at −5.19 eV and −2.52 eV (CV) and at −5.5 eV and −2.3 eV (ER-EIS). The imine exhibited 5% weight loss at 156 °C. The electrical behavior and photovoltaic performance of the perovskite solar cell was examined for FTO/TiO2/perovskite/bTAThDaz/Ag device architecture. Constructed devices exhibited good time and air stability together with quite small effect of hysteresis. The observed solar conversion efficiency was 14.4%.

Publisher

MDPI AG

Subject

General Materials Science

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