Applied Physics Letters · 2010 · 44 citations · 24 references
EngineeringOrganic Solar CellPhoto-electrochemical CellPhotovoltaic DevicesOptoelectronic DevicesPlasmon-enhanced PhotovoltaicsPhotovoltaicsElectronic DevicesNanoengineeringIndium-tin-oxide NanoelectrodesSolar Cell StructuresLifetime EnhancementPolymer-based Solar CellsMaterials ScienceElectrical EngineeringBuried ElectrodesSolar PowerEnergy MaterialElectronic MaterialsSemiconducting PolymerNanomaterialsSolar CellsEmbedded NanoelectrodesIto NanoelectrodesSolar Cell Materials
In this paper, distinctive indium-tin-oxide (ITO) nanorods are employed to serve as buried electrodes for polymer-based solar cells. The embedded nanoelectrodes allow three-dimensional conducting pathways for low-mobility holes, offering a highly scaffolded cell architecture in addition to bulk heterojunctions. As a result, the power conversion efficiency of a polymer cell with ITO nanoelectrodes is increased to about 3.4% and 4.4% under one-sun and five-sun illumination conditions, respectively, representing an enhancement factor of up to ∼10% and 36% compared to a conventional counterpart. Also, the corresponding device lifetime is prolonged twice as much to about 110 min under five-sun illumination.
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