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Stable pure-iodide wide-band-gap perovskites for efficient Si tandem cells via kinetically controlled phase evolution

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Title
Stable pure-iodide wide-band-gap perovskites for efficient Si tandem cells via kinetically controlled phase evolution
Author(s)
Ji, Su Geun; Park, Ik Jae; Hogeun Chang; Park, Jae Hyun; Hong, Geon Pyo; Back Kyu Choi; Jang, Jun Ho; Choi, Yeo Jin; Lim, Hyun Woo; Ahn, You Jin; Park, So Jeong; Nam, Ki Tae; Taeghwan Hyeon; Jungwonn Park; Dong Hoe Kim; Jin Young Kim
Publication Date
2022-10
Journal
JOULE, v.6, no.10, pp.2390 - 2405
Publisher
CELL PRESS
Abstract
Halide perovskites, promising top-cell materials for efficient Si tan-dem solar cells, suffer from halide segregation, which results from the halide mixing necessary for achieving band-gap widening. We report pure-iodide wide-band-gap perovskite top cells that are fundamentally free of halide segregation. Cs and dimethylammo-nium cations were incorporated simultaneously into the A-site of perovskite structure to increase the band gap while maintaining the tolerance factor. However, the incorporation of dual cations re-sulted in the simultaneous formation of orthorhombic and hexago-nal secondary phases rather than forming the pure perovskite phase, owing to the different precipitation kinetics between cat-ions. We demonstrated that this strategy can only be implemented by the phase-controlled nucleation of the Cs-rich composition that governs the desired phase evolution. The pure-iodide perovskite top cell exhibited excellent photo-stability (1% degradation after 1,000 h of continuous operation; ISOS-L-1I, white LED), and its Si tandem exhibited a high conversion efficiency of 29.4% (28.37% certified).
URI
https://pr.ibs.re.kr/handle/8788114/12631
DOI
10.1016/j.joule.2022.08.006
ISSN
2542-4351
Appears in Collections:
Center for Nanoparticle Research(나노입자 연구단) > 1. Journal Papers (저널논문)
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