Abstract Recently, materials revealing the upconversion (UC) phenomenon, which is a conversion of low-energy photons to higher-energy ones, have attracted considerable attention in luminescence thermometry due to the possibility of precise and remote optical thermal sensing. The most widely studied type of luminescent thermometry uses a ratiometric approach based on changes in the UC luminescence intensity, mainly of lanthanide ions’ thermally coupled energy levels. In this work, NaYF4:Ho3+@NaYF4, and NaYF4:Ho3+, Er3+@NaYF4 nanoparticles (NPs) were synthesized by the controlled reaction in oleic acid and octadecene at 573 K. The obtained nanoparticles had hexagonal structures, oval shapes, and average sizes of 22.5 ± 2.2 nm and 22.2 ± 2.0 n...
In this work the temperature dependent upconversion luminescence of NaYF4:Yb3+/Er3+ nanocrystals is ...
International audienceThe present work involves the design of a multifunctional system based on gold...
Producción CientíficaHere we analyze alternative luminescence thermometry techniques to FIR, such as...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Photon upconverting nanoparticles convert near-infrared into visible light (anti-Stokes emission), w...
Among several optical non-contact thermometry methods, luminescence thermometry is the most versatil...
Photon upconverting nanoparticles convert near-infrared into visible light (anti-Stokes emission), w...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
Novel flower-like alpha-NaYb(Mn)F-4:Er3+/Tm3+@NaYF4 upconversion nanoparticles (UCNPs) as luminescen...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
In this work the temperature dependent upconversion luminescence of NaYF4:Yb3+/Er3+ nanocrystals is ...
International audienceThe present work involves the design of a multifunctional system based on gold...
Producción CientíficaHere we analyze alternative luminescence thermometry techniques to FIR, such as...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Photon upconverting nanoparticles convert near-infrared into visible light (anti-Stokes emission), w...
Among several optical non-contact thermometry methods, luminescence thermometry is the most versatil...
Photon upconverting nanoparticles convert near-infrared into visible light (anti-Stokes emission), w...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
Novel flower-like alpha-NaYb(Mn)F-4:Er3+/Tm3+@NaYF4 upconversion nanoparticles (UCNPs) as luminescen...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
In this work the temperature dependent upconversion luminescence of NaYF4:Yb3+/Er3+ nanocrystals is ...
International audienceThe present work involves the design of a multifunctional system based on gold...
Producción CientíficaHere we analyze alternative luminescence thermometry techniques to FIR, such as...