Publication | Closed Access
Simultaneous Enhancement of Upconversion and Downshifting Luminescence via Plasmonic Structure
67
Citations
50
References
2015
Year
PhotonicsPlasmonicsMim StructureVisible LightNanotransfer Printing MethodEngineeringPlasmonic CatalysisOptical PropertiesPhotoluminescenceApplied PhysicsUpconversion LuminescenceOptoelectronic DevicesSimultaneous EnhancementChemistryPlasmon-enhanced PhotovoltaicsLuminescence PropertyOptoelectronicsPlasmonic Material
We describe a metal nanodisk-insulator-metal (MIM) structure that enhances lanthanide-based upconversion (UC) and downshifting (DS) simultaneously. The structure was fabricated using a nanotransfer printing method that facilitates large-area applications of nanostructures for optoelectronic devices. The proposed MIM structure is a promising way to harness the entire solar spectrum by converting both ultraviolet and near-infrared to visible light concurrently through resonant-mode excitation. The overall photoluminescence enhancements of the UC and DS were 174- and 29-fold, respectively.
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