Publication | Closed Access
Simple Technique for Spatially Separated Nanofibers/Nanobeads by Multinozzle Electrospinning toward White-Light Emission
33
Citations
41
References
2013
Year
EngineeringDye SeparationLuminescence PropertyFluorescence ColorChemical EngineeringWhite-light EmissionNanoscale ChemistrySpatially Separated Nanofibers/nanobeadsNanostructure SynthesisThermally Activated Delayed FluorescenceMaterials ScienceBlue DyesNanotechnologyNanofibersNano ApplicationWhite OledNanofiberNanomaterialsMultinozzle ElectrospinningNanofabricationPhosphorescence
Electrospun, emission color-tunable nanofibrous sheets were fabricated by multinozzle electrospinning equipped with a secondary electrode for the preparation of white-emissive sheets under a single excitation source, manipulating energy transfer between dyes. By control of the concentration of commercially available red, green, and blue dyes in the matrix polymer [poly(methyl methacrylate)], emission color tuning can be easily accomplished because each dye is located in spatially separated fibers to maintain enough distance to prevent or suppress energy transfer, allowing white-light emission. The application of dye separation for the white-light emission upon excitation with a blue light-emitting-diode lamp is demonstrated, indicative of its potential application for the easy and facile tuning of fluorescence color toward flexible illumination.
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