Publication | Closed Access
Improving charge transport property and energy transfer with carbon quantum dots in inverted polymer solar cells
54
Citations
32
References
2014
Year
EngineeringOrganic Solar CellCdots AffectPhotovoltaicsChemical EngineeringCarbon-based MaterialNanoelectronicsCharge SeparationMaterials ScienceElectrical EngineeringEnergy TransferCarbon Quantum DotsGraphene Quantum DotSemiconducting PolymerApplied PhysicsCharge Transport PropertyConjugated PolymerPscs PerformanceSolar Cells
Carbon quantum dots (Cdots) are synthesized by a simple method and introduced into active layer of polymer solar cells (PSCs). The performance of doped devices was apparently improved, and the highest power conversion efficiency of 7.05% was obtained, corresponding to a 28.2% enhancement compared with that of the contrast device. The charge transport properties, resistance, impedance, and transient absorption spectrum are systematically investigated to explore how the Cdots affect on PSCs performance. This study reveals the importance of Cdots in enhancing the efficiency of PSCs and gives insight into the mechanism of charge transport improvement.
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