Pregled bibliografske jedinice broj: 1210791
Improvement in the Performance of Inverted 3D/2D Perovskite Solar Cells by Ambient Exposure
Improvement in the Performance of Inverted 3D/2D Perovskite Solar Cells by Ambient Exposure // Solar RRL, 6 (2022), 7; 2200224, 5 doi:10.1002/solr.202200224 (međunarodna recenzija, članak, znanstveni)
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Naslov
Improvement in the Performance of Inverted 3D/2D
Perovskite Solar Cells by Ambient Exposure
Autori
Wang, Yantao ; Lin, Jingyang ; He, Yanling ; Zhang, Yi ; Liang, Qiong ; Liu, Fangzhou ; Zhou, Zhiwei ; Chan, Christopher C. S. ; Li, Gang ; Feng, Shien-Ping ; Ng, Alan Man Ching ; Wong, Kam Sing ; Popović, Jasminka ; Djurišić, Aleksandra B.
Izvornik
Solar RRL (2367-198X) 6
(2022), 7;
2200224, 5
Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni
Ključne riječi
Inverted 3D/2D Perovskite Solar Cells
Sažetak
Perovskite solar cells (PSCs) are known to be sensitive to the exposure to ambient humidity, which typically results in the degradation and deterioration of performance, although positive effects of exposure to moisture have also been reported, due to recrystallization of the perovskite. Common approach to improve stability is to use 3D/2D perovskite active layer, where 2D capping layer is prepared by spin coating the bulky organic cation halide. Herein, it is shown that optimizing the exposure of the capping layer prepared by spin coating phenylethylammonium iodide (PEAI) to ambient atmosphere results in substantial improvement of the PSC performance. Furthermore, the initial effects of PEAI treatment are dependent on the NiO x /perovskite interface, but in all cases except at very high humidity (80– 85% RH) optimized exposure to ambient results in improved performance. The variations in device performance with PEAI treatment and ambient exposure can be attributed to defect passivation and changes in the charge extraction due to energy-level alignment at the interfaces. The best performing devices have passivation of NiO x /perovskite interface and PEAI treatment of top surface followed by exposure to ambient atmosphere at RH of 40–45%, which results in the power conversion efficiency increase from 20.3% to 22.4%.
Izvorni jezik
Engleski
Znanstvena područja
Fizika, Kemija
Citiraj ovu publikaciju:
Časopis indeksira:
- Current Contents Connect (CCC)
- Web of Science Core Collection (WoSCC)
- Science Citation Index Expanded (SCI-EXP)
- SCI-EXP, SSCI i/ili A&HCI
- Scopus