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Sustainable Self-Healing of Perovskite Solar Cells Using Dendrimers as Volatile Reservoirsopen access

Authors
Koo, BonkeeKim, WooyeonChoi, KiwonHuh, June H.Ko, Min Jae
Issue Date
Jan-2026
Publisher
WILEY-V C H VERLAG GMBH
Keywords
moisture stability; multifunctional dendrimer; perovskite degradation mechanism; perovskite solar cell; self-healing perovskite
Citation
ADVANCED MATERIALS, v.38, no.5, pp 1 - 13
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED MATERIALS
Volume
38
Number
5
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/219206
DOI
10.1002/adma.202512410
ISSN
0935-9648
1521-4095
Abstract
Perovskite solar cells (PSCs) face critical challenges owing to their intrinsic instability under harsh environmental conditions. Although various strategies are explored to enhance stability, their effects remain temporary. Herein, dendrimers are designed that serve as volatile reservoirs, enabling repeated self-healing while simultaneously enhancing power conversion efficiency (PCE). PSCs containing these dendrimers achieve a PCE exceeding 26% and recover 90% of their initial PCE after ten cycles of alternating high-humidity and dry conditions. Then the self-healing mechanism is elucidated, which is facilitated by the dendrimers capturing volatile FA and interacting with PbI6 octahedra to form intermediate phases. These phenomena afford a reversible transition between perovskite and degraded perovskite phases. This approach offers a sustainable pathway toward semi-permanent PSCs by enabling continuous self-healing of perovskite materials.
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COLLEGE OF ENGINEERING (DEPARTMENT OF CHEMICAL ENGINEERING)
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