Efficient photosensitized luminescence from Eu 3+ in inert nanocrystals via ligand coordination

Luminescent lanthanide ions incorporated in sodium yttrium fluoride nanocrystals are promising as new luminescent materials in optoelectronics and bioimaging since the nonradiative transition is significantly suppressed due to the absence of high-energy vibrational modes. To prepare optically and el...

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Veröffentlicht in:Japanese Journal of Applied Physics 2024-09, Vol.63 (9), p.9
Hauptverfasser: Goushi, Kenichi, Kashiwagi, Yusaku, Adachi, Chihaya
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container_title Japanese Journal of Applied Physics
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creator Goushi, Kenichi
Kashiwagi, Yusaku
Adachi, Chihaya
description Luminescent lanthanide ions incorporated in sodium yttrium fluoride nanocrystals are promising as new luminescent materials in optoelectronics and bioimaging since the nonradiative transition is significantly suppressed due to the absence of high-energy vibrational modes. To prepare optically and electrically active nanocrystals, we explored organic ligands that allow efficient triplet energy transfer to Eu 3+ incorporated into nanocrystals, resulting in an efficient photosensitization effect in colloidal solutions and films. Further, we applied these emitting nanocrystals to light-emitting devices and observed the electroluminescence.
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title Efficient photosensitized luminescence from Eu 3+ in inert nanocrystals via ligand coordination
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