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Title: In-situ understanding on the formation of fibrillar morphology in green solvent processed all-polymer solar cells
Authors: Ma, R 
Li, H
Peña, TAD
Wang, H
Yan, C
Cheng, P
Wu, J
Li, G 
Issue Date: Dec-2024
Source: National science review, Dec. 2024, v. 11, no. 12, nwae384
Abstract: Solid additive engineering has been intensively explored on morphology tuning for highly efficient all-polymer solar cells (all-PSCs), a promising photovoltaic technology towards multi-scenario application. Although the nano-fibrillar network of the active layer induced by additive treatment is confirmed as the key factor for power conversion efficiency (PCE) of all-PSCs, its formation mechanism is not clearly revealed, for lack of precise and convincing real-time observation of crystallization and phase separation during the liquid-to-solid transition process of spin-coating. Herein we report an in-situ grazing incidence wide-angle/small-angle X-ray scattering (GIWAXS/GISAXS) screening that reveals the fact that naphthalene derived solid additives can suppress the aggregation of the polymer acceptor (PY-IT) at the beginning stage of spin coating, which provides sufficient time and space for the polymer donor (PM6) to form the fibril structure. Moreover, guided by this knowledge, a ternary all-polymer system is proposed, which achieves cutting-edge level PCEs for both small-area (0.04 cm2) (also decent operational stability) and large-area (1 cm2) devices.
Keywords: All-polymer solar cells
In-situ morphology screening
Naphthalene-based solid additives
Phase segregation
Publisher: Oxford University Press
Journal: National science review 
ISSN: 2095-5138
EISSN: 2053-714X
DOI: 10.1093/nsr/nwae384
Rights: ©TheAuthor(s)2024.PublishedbyOxfordUniversityPressonbehalfofChinaSciencePublishing&MediaLtd.ThisisanOpenAccessarticledistributedunderthetermsoftheCreative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
The following publication Ruijie Ma, Hongxiang Li, Top Archie Dela Peña, Heng Wang, Cenqi Yan, Pei Cheng, Jiaying Wu, Gang Li, In-situ understanding on the formation of fibrillar morphology in green solvent processed all-polymer solar cells, National Science Review, Volume 11, Issue 12, December 2024, nwae384 is available at https://doi.org/10.1093/nsr/nwae384.
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