Articles producció científicaEnginyeria Electrònica, Elèctrica i Automàtica

Stability and charge transport analysis of high-performance PM6:Y7 nonfullerene organic solar cells using the metal-insulator-metal model

  • Dades identificatives

    Identificador:  imarina:9450000
    Autors:  Hernandez-Garcia, Liliana Fernanda; Resendiz, Luis; Ramirez-Como, Magaly; Sacramento, Angel; Cabrera, Victor; Estrada, Magali; Pallares, Josep; Marsal, Lluis F; Marsal, Lluis F
    Resum:
    Non-fullerene acceptors are promising materials for organic solar cells because of their flexibility and low cost; however, their long-term stability remains a critical challenge. In this study, we investigate the degradation mechanisms of conventionally structured solar cells (ITO/PEDOT: PSS/PM6/Y7/PDINO/Ag) under different environmental conditions: nitrogen preservation, encapsulation, and air exposure. Using the metal-insulator-metal (MIM) model, we simulate the current-voltage characteristics and extract key parameters to understand the physical mechanisms governing device degradation. The results show that air exposure primarily affects the anode interface, reducing the interfacial dipole energy and shifting the Fermi-level alignment of PEDOT: PSS, which is crucial for efficient hole extraction. This process leads to a deterioration in the hole transport properties over time, significantly affecting device performance. In contrast, the cathodic interface remains stable, suggesting that degradation is largely driven by changes in the hole transport layer. These findings provide critical insights into the interfacial degradation mechanisms of the NFA-based solar cells. Understanding these effects will aid in the development of strategies to enhance the stability and efficiency of organic photovoltaic devices for long-term operation.
  • Altres:

    Enllaç font original: https://link.springer.com/article/10.1007/s40243-025-00300-2
    Referència de l'ítem segons les normes APA: Hernandez-Garcia, Liliana Fernanda; Resendiz, Luis; Ramirez-Como, Magaly; Sacramento, Angel; Cabrera, Victor; Estrada, Magali; Pallares, Josep; Marsal (2025). Stability and charge transport analysis of high-performance PM6:Y7 nonfullerene organic solar cells using the metal-insulator-metal model. Materials for Renewable and Sustainable Energy, 14(1), 26-. DOI: 10.1007/s40243-025-00300-2
    Referència a l'article segons font original: Materials for Renewable and Sustainable Energy. 14 (1): 26-
    DOI de l'article: 10.1007/s40243-025-00300-2
    Any de publicació de la revista: 2025-04-01
    Entitat: Universitat Rovira i Virgili
    Versió de l'article dipositat: info:eu-repo/semantics/publishedVersion
    Data d'alta del registre: 2026-04-25
    Autor/s de la URV: Marsal Garví, Luis Francisco / Pallarès Marzal, Josep
    Departament: Enginyeria Electrònica, Elèctrica i Automàtica
    URL Document de llicència: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipus de publicació: Journal Publications
    Autor segons l'article: Hernandez-Garcia, Liliana Fernanda; Resendiz, Luis; Ramirez-Como, Magaly; Sacramento, Angel; Cabrera, Victor; Estrada, Magali; Pallares, Josep; Marsal, Lluis F; Marsal, Lluis F
    Accès a la llicència d'ús: https://creativecommons.org/licenses/by/3.0/es/
    Àrees temàtiques: Renewable energy, sustainability and the environment, Química, Materials science, multidisciplinary, Materials chemistry, Interdisciplinar, Fuel technology, Engenharias iii, Engenharias ii, Electronic, optical and magnetic materials
    Adreça de correu electrònic de l'autor: josep.pallares@urv.cat, lluis.marsal@urv.cat
  • Paraules clau:

    Open-circuit voltage
    Numerical simulation
    Numerical simulatio
    Nonfullerene organic solar cells
    Interface
    Energy-level alignment
    Energy alignment
    Degradation
    Anodic interface degradation
    Accepto
    Electronic
    Optical and Magnetic Materials
    Fuel Technology
    Materials Chemistry
    Materials Science
    Multidisciplinary
    Renewable Energy
    Sustainability and the Environment
    Química
    Interdisciplinar
    Engenharias iii
    Engenharias ii
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