Polymeric nanoparticles obtained by co-aggregation of a polybenzofulvene derivative with bulky substituted perylene diimide dyes in tetrahydrofuran/water mixtures display emission color tunable from blue to red, or deep-red, thanks to energy transfer processes from the polymer to the emissive dyes activated by nanoparticle shrinking. At high water concentrations the presence of well emissive perylene diimide dye micro-aggregates within the polymer nanoparticles limits the FRET efficiency leading to a combined emission from both the polymer (blue) and the dyes (red and deep-red). The optical properties of the NPs are retained also in the solid state where a weak blue contribution of the polymer emission is observed providing multicolor emission in the films obtained by NPs deposition.
Villafiorita-Monteleone, F., Kozma, E., Giovanella, U., Catellani, M., Paolino, M., Collico, V., et al. (2018). Red and deep-red emissive polymeric nanoparticles based on polybenzofulvene and perylenediimide derivatives. DYES AND PIGMENTS, 149, 331-335 [10.1016/j.dyepig.2017.10.010].
Red and deep-red emissive polymeric nanoparticles based on polybenzofulvene and perylenediimide derivatives
Paolino, M.;Cappelli, A.;
2018-01-01
Abstract
Polymeric nanoparticles obtained by co-aggregation of a polybenzofulvene derivative with bulky substituted perylene diimide dyes in tetrahydrofuran/water mixtures display emission color tunable from blue to red, or deep-red, thanks to energy transfer processes from the polymer to the emissive dyes activated by nanoparticle shrinking. At high water concentrations the presence of well emissive perylene diimide dye micro-aggregates within the polymer nanoparticles limits the FRET efficiency leading to a combined emission from both the polymer (blue) and the dyes (red and deep-red). The optical properties of the NPs are retained also in the solid state where a weak blue contribution of the polymer emission is observed providing multicolor emission in the films obtained by NPs deposition.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/1032957