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Progress in Stability of Organic Solar Cells

Advanced Science · 2020 · Vol. 7(11) · pp. 1903259–1903259
Leiping DuanAshraf Uddin

Abstract

The organic solar cell (OSC) is a promising emerging low-cost thin film photovoltaics technology. The power conversion efficiency (PCE) of OSCs has overpassed 16% for single junction and 17% for organic-organic tandem solar cells with the development of low bandgap organic materials synthesis and device processing technology. The main barrier of commercial use of OSCs is the poor stability of devices. Herein, the factors limiting the stability of OSCs are summarized. The limiting stability factors are oxygen, water, irradiation, heating, metastable morphology, diffusion of electrodes and buffer layers materials, and mechanical stress. The recent progress in strategies to increase the stability of OSCs is surveyed, such as material design, device engineering of active layers, employing inverted geometry, optimizing buffer layers, using stable electrodes and encapsulation materials. The International Summit on Organic Photovoltaic Stability guidelines are also discussed. The potential research strategies to achieve the required device stability and efficiency are highlighted, rendering possible pathways to facilitate the viable commercialization of OSCs.

Organic Electronics and PhotovoltaicsPerovskite Materials and ApplicationsConducting polymers and applicationsOrganic solar cellMaterials scienceNanotechnologyPhotovoltaic systemPhotovoltaicsLimitingPolymerElectrical engineeringComposite materialMechanical engineering

Funding

  • Australian Government
Citations
496
FWCI
31.23
field-weighted impact
References
295
Percentile
100%
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Citations per year
Cited by
Progress in Stability of Organic Solar Cells
Advanced Science · 2020 · 496 citations
References
Organometal halide perovskite solar cells: degradation and stability
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Polymer–Fullerene Composite Solar Cells
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Interface materials for organic solar cells
Journal of Materials Chemistry · 2010 · 730 citations
Ultrathin and lightweight organic solar cells with high flexibility
Nature Communications · 2012 · 1,707 citations
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