Sensitization of upconverting nanoparticles with a NIR-emissive cyanine dye using a micellar encapsulation approach

Photon upconversion nanomaterials have a wide range of applications, including biosensing and deep-tissue imaging. Their typically very weak and narrow absorption bands together with their size dependent luminescence efficiency can limit their application potential. This has been addressed by increa...

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Veröffentlicht in:Methods and applications in fluorescence 2019-01, Vol.7 (1), p.14003-014003
Hauptverfasser: Saleh, Maysoon I, Panas, Ihor D, Frenzel, Florian, Würth, Christian, Rühle, Bastian, Slominskii, Yuri L, Demchenko, Aleksander, Resch-Genger, Ute
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Sprache:eng
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Zusammenfassung:Photon upconversion nanomaterials have a wide range of applications, including biosensing and deep-tissue imaging. Their typically very weak and narrow absorption bands together with their size dependent luminescence efficiency can limit their application potential. This has been addressed by increasingly sophisticated core-shell particle architectures including the sensitization with organic dyes that strongly absorb in the near infrared (NIR). In this work, we present a simple water-dispersible micellar system that features energy transfer from the novel NIR excitable dye, 1859 SL with a high molar absorption coefficient and a moderate fluorescence quantum yield to oleate-capped NaYF4:20%Yb(III), 2%Er(III) upconversion nanoparticles (UCNP) upon 808 nm excitation. The micelles were formed using the surfactants Pluronic F-127 and Tween 80 to produce a hydrophilic dye-UCNP system. Successful energy transfer from the dye to the UCNP could be confirmed by emission measurements that revealed the occurrence of upconversion emission upon excitation at 808 nm and an enhancement of the green Er(III) emission compared to direct Er(III) excitation at 808 nm.
ISSN:2050-6120
2050-6120
DOI:10.1088/2050-6120/aafe1f