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Minimizing the Interface-Driven Losses in Inverted Perovskite Solar Cells and Modules

Authors :
Zhang, Xin
Qiu, Weiming
Apergi, Sofia
Singh, Shivam
Marchezi, Paulo
Song, Wenya
Sternemann, Christian
Elkhouly, Karim
Zhang, Dong
Aguirre, Aranzazu
Merckx, Tamara
Krishna, Anurag
Shi, Yuanyuan
Bracesco, Andrea
van Helvoirt, Cristian
Bens, Frennie
Zardetto, Valerio
D’Haen, Jan
Yu, Anran
Brocks, Geert
Aernouts, Tom
Moons, Ellen
Tao, Shuxia
Zhan, Yiqiang
Kuang, Yinghuan
Poortmans, Jef
Zhang, Xin
Qiu, Weiming
Apergi, Sofia
Singh, Shivam
Marchezi, Paulo
Song, Wenya
Sternemann, Christian
Elkhouly, Karim
Zhang, Dong
Aguirre, Aranzazu
Merckx, Tamara
Krishna, Anurag
Shi, Yuanyuan
Bracesco, Andrea
van Helvoirt, Cristian
Bens, Frennie
Zardetto, Valerio
D’Haen, Jan
Yu, Anran
Brocks, Geert
Aernouts, Tom
Moons, Ellen
Tao, Shuxia
Zhan, Yiqiang
Kuang, Yinghuan
Poortmans, Jef
Source :
ACS Energy Letters vol.8 (2023) date: 2023-06-09 nr.6 p.2532-2542 [ISSN 2380-8195]
Publication Year :
2023

Abstract

The inverted p-i-n perovskite solar cells hold high promise for scale-up toward commercialization. However, the interfaces between the perovskite and the charge transport layers contribute to major power conversion efficiency (PCE) loss and instability. Here, we use a single material of 2-thiopheneethylammonium chloride (TEACl) to molecularly engineer both the interface between the perovskite and fullerene-C60 electron transport layer and the buried interface between the perovskite and NiOx-based hole transport layer. The dual interface modification results in optimized band alignment, suppressed nonradiative recombination, and improved interfacial contact. A PCE of 24.3% is demonstrated, with open-circuit voltage (Voc) and fill factor (FF) of 1.17 V and 84.6%, respectively. The unencapsulated device retains >97.0% of the initial performance after 1000 h of maximum power point tracking under illumination. Moreover, a PCE of 22.6% and a remarkable FF of 82.4% are obtained for a mini-module with an active area of 3.63

Details

Database :
OAIster
Journal :
ACS Energy Letters vol.8 (2023) date: 2023-06-09 nr.6 p.2532-2542 [ISSN 2380-8195]
Notes :
Zhang, Xin
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415718953
Document Type :
Electronic Resource