EDTA functionalization of SrF2:Yb,Er nanoparticles by hydrothermal synthesis: Intense red upconversion, NIR-to-NIR emission and luminescence nanothermometry characteristics

SrF 2 based upconversion nanoparticles (UCNPs) were synthesized by hydrothermal method using ethylenediaminetetraacetic acid (EDTA) as surfactant, by doping with single-lanthanide-activator Er ion and sensitizer-activator Yb 3+ −Er 3+ ion-pair. The excited state absorption (ESA) and energy transfer...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2019-12, Vol.30 (23), p.20376-20392
Hauptverfasser: Senthilselvan, J., Thomas, Sinju, Anbharasi, L., Sarkar, Debashrita, Adusumalli, Venkata N. K. B., Arun Kumar, S., Yamini, S., Gunaseelan, M., Manonmani, J., Mahalingam, Venkataramanan
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Sprache:eng
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Zusammenfassung:SrF 2 based upconversion nanoparticles (UCNPs) were synthesized by hydrothermal method using ethylenediaminetetraacetic acid (EDTA) as surfactant, by doping with single-lanthanide-activator Er ion and sensitizer-activator Yb 3+ −Er 3+ ion-pair. The excited state absorption (ESA) and energy transfer upconversion (ETU) properties were investigated respectively by synthesizing SrF 2 :2%Er and SrF 2 :20%Yb,2%Er nanoparticles. EDTA aided hydrothermal synthesis resulted in nano-rod, nano-plate and nano-sphere morphological particles. The hydrothermally grown SrF 2 :Yb,Er UCNPs are formed as nano-spheres in size ~ 30 to 60 nm. It gives a high specific surface area of 47.17 to 23.58 m 2 g −1 . The nano-spherical SrF 2 :Yb,Er resulted an intense red upconversion emission at 660 nm, under the near-infrared (NIR) 980 nm excitation, due to its high specific surface area and ETU mechanism. The post-calcined SrF 2 :Yb 3+ ,Er 3+ gives better red-to-green emission intensity ratio compared to the as-prepared counterparts. SrF 2 :Er 3+ gives very weak red emission due to ESA mechanism. The optical energy gap of SrF 2 :Yb,Er UCNP was calculated using the barycentre of green emission at 524 and 542 nm from the thermally coupled energy levels of 2 H 11/2 and 4 S 3/2 . It gives an optical energy gap of 766 cm −1 and the estimated thermal sensitivity is 1.22% K −1 at 300 K. The result is in agreement with other published reports. We also demonstrated the NIR-to-NIR (980-to-850 nm) upconversion emission in the SrF 2 :Yb 3+ , Er 3+ nanoparticle.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-019-02311-y