Large scale and electro-switchable polarized emission from semiconductor nanorods aligned in polymeric nanofibers

We demonstrate the fabrication of a large scale device allowing for electrical switching of polarized light with a polarization ratio of 0.45 over a 1.5 cm 2 area. To achieve this, silica coated semiconductor nanorods were embedded in polymeric nanofibers by electrospinning. The uniaxial extensional...

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Veröffentlicht in:ACS photonics 2015-05, Vol.2 (5), p.583-588
Hauptverfasser: Aubert, Tangi, Palangetic, Ljiljana, Mohammadimasoudi, Mohammad, Neyts, Kristiaan, Beeckman, Jeroen, Clasen, Christian, Hens, Zeger
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Sprache:eng
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Zusammenfassung:We demonstrate the fabrication of a large scale device allowing for electrical switching of polarized light with a polarization ratio of 0.45 over a 1.5 cm 2 area. To achieve this, silica coated semiconductor nanorods were embedded in polymeric nanofibers by electrospinning. The uniaxial extensional flow experienced by the particles induces alignment of the nanorods within the nanofibers. A subsequent parallel alignment of the nanofibers themselves results in a large and flexible film of massively aligned nanorods that can conveniently be processed further. We demonstrate this by integrating the aligned nanofibers in a liquid crystal cell with a polarizer where applying a voltage allows switching the emitted light on and off.
ISSN:2330-4022
2330-4022
DOI:10.1021/acsphotonics.5b00068