2022
DOI: 10.3390/nano12224085
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Cascade Förster Resonance Energy Transfer Studies for Enhancement of Light Harvesting on Dye-Sensitized Solar Cells

Abstract: This work reports cascade Förster resonance energy transfer (FRET)-based n-type (ZnO) and p-type (NiO) dye-sensitized solar cells (DSSCs), discussing approaches to enhance their overall performance. Although DSSCs suffer from poorer performance than other solar cells, the use of composites with carbon dot (Cdot) can enhance the power conversion efficiency (PCE) of DSSCs. However, further improvements are demanded through molecular design to stimulate DSSCs. Here, a photosensitized system based on a cascade FRE… Show more

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Cited by 5 publications
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“…An enduring issue facing humanity is energy scarcity [166][167][168][169][170][171]. Developing effective LHSs (light-harvesting systems) is crucial for addressing the energy crisis and advancing research in photocatalysis, optical sensing, and light-emitting devices [172][173][174][175][176][177][178][179][180]. PSPs exhibit reconcilable and reversible characteristics for the construction of LHSs [181][182][183][184].…”
Section: Light-harvesting Systemmentioning
confidence: 99%
“…An enduring issue facing humanity is energy scarcity [166][167][168][169][170][171]. Developing effective LHSs (light-harvesting systems) is crucial for addressing the energy crisis and advancing research in photocatalysis, optical sensing, and light-emitting devices [172][173][174][175][176][177][178][179][180]. PSPs exhibit reconcilable and reversible characteristics for the construction of LHSs [181][182][183][184].…”
Section: Light-harvesting Systemmentioning
confidence: 99%