Articles producció científicaEnginyeria Informàtica i Matemàtiques

A Flexible Photovoltaic Fatigue Factor for Quantification of Mechanical Device Performance

  • Identification data

    Identifier:  imarina:9423951
    Authors:  Sun, LL; Fukuda, K; Guo, RQ; Castriotta, LA; Forberich, K; Zhou, YH; Someya, T; Brabec, CJ; Almora, O
    Abstract:
    Flexible emerging photovoltaic technologies, such as organic and perovskite photovoltaics, hold great potential for integration into tents, wearable electronics, and other portable applications. Recently, Fukuda et al. (2024) propose a bending test protocol for standardizing the mechanical performance characterization of flexible solar cells, focusing on 1% strain over 1 000 bending cycles. This marked an important step toward establishing consistency and good practices in the literature. However, even with this unified protocol, accurately comparing the mechanical flexibility of solar cells is hindered by the variated influence of parameters like thickness, bending radius, and power conversion efficiency (PCE) evolution during mechanical testing. Herein, a new figure of merit is introduced, the flexible photovoltaic fatigue factor (F), which integrates PCE retention, strain, and bending cycles into a cohesive framework. Guided by a detailed multilayer mechanical model, this metric enables more accurate strain analysis and promotes consistent reporting, paving the way for performance optimization in flexible photovoltaics.
  • Others:

    Link to the original source: https://advanced.onlinelibrary.wiley.com/doi/10.1002/adfm.202422706
    APA: Sun, LL; Fukuda, K; Guo, RQ; Castriotta, LA; Forberich, K; Zhou, YH; Someya, T; Brabec, CJ; Almora, O (2025). A Flexible Photovoltaic Fatigue Factor for Quantification of Mechanical Device Performance. ADVANCED FUNCTIONAL MATERIALS, 35(19), 2422706-. DOI: 10.1002/adfm.202422706
    Paper original source: ADVANCED FUNCTIONAL MATERIALS. 35 (19): 2422706-
    Article's DOI: 10.1002/adfm.202422706
    Journal publication year: 2025-05-01
    Entity: Universitat Rovira i Virgili
    Paper version: info:eu-repo/semantics/publishedVersion
    Record's date: 2026-05-09
    URV's Author/s: Almora Rodríguez, Osbel
    Department: Enginyeria Informàtica i Matemàtiques
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Publication Type: Journal Publications
    Author, as appears in the article.: Sun, LL; Fukuda, K; Guo, RQ; Castriotta, LA; Forberich, K; Zhou, YH; Someya, T; Brabec, CJ; Almora, O
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Journal volume: 35
    Thematic Areas: Physics, condensed matter, Physics, applied, Nanoscience and nanotechnology, Nanoscience & nanotechnology, Materials science, multidisciplinary, Materials science (miscellaneous), Materials science (all), General materials science, General chemistry, Electronic, optical and magnetic materials, Electrochemistry, Condensed matter physics, Chemistry, physical, Chemistry, multidisciplinary, Chemistry (miscellaneous), Chemistry (all), Biomaterials, Astronomia / física
    Author's mail: osbel.almora@urv.cat, osbel.almora@urv.cat, osbel.almora@urv.cat
  • Keywords:

    Robus
    Progress
    Perovskite solar-cells
    Operational photovoltaic stability
    Operational photovoltaic stabilit
    Mechanical strain
    Mechanical stability
    Flexible solar cells
    Films
    Bending test
    Biomaterials
    Chemistry (Miscellaneous)
    Chemistry
    Multidisciplinary
    Physical
    Condensed Matter Physics
    Electrochemistry
    Electronic
    Optical and Magnetic Materials
    Materials Science (Miscellaneous)
    Materials Science
    Nanoscience & Nanotechnology
    Nanoscience and Nanotechnology
    Physics
    Applied
    Condensed M
    condensed matter
    Materials science (all)
    General materials science
    General chemistry
    Chemistry (all)
    Astronomia / física
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