In this work the temperature dependent upconversion luminescence of NaYF4:Yb3+/Er3+ nanocrystals is characterized over a large temperature range, relevant for thermometry in chemical reactors. The temperature of the nanocrystals determines the intensity ratio between the two green emission lines of erbium from the 2H11/2 level centred at 520 nm and from the 4S3/2 level centred at 540 nm. To this end, the green luminescence of erbium is monitored for different temperatures. The green emission of erbium is visible upon infrared excitation of ytterbium at 980 nm and following energy transfer upconversion. To allow for practical application of NaYF4: Yb3+/Er3+ as nanothermometer, the scale of nanocrystal synthesis is increased by a factor of fo...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...
Novel flower-like alpha-NaYb(Mn)F-4:Er3+/Tm3+@NaYF4 upconversion nanoparticles (UCNPs) as luminescen...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...
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...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
© 2016 The Royal Society of Chemistry. Rare-earth doped upconversion nanocrystals have emerged as a ...
Recent technological developments require knowledge of temperature down to the micro- or even nanosc...
Accurate and reliable non-contact temperature sensors are imperative for industrial production and s...
Among several optical non-contact thermometry methods, luminescence thermometry is the most versatil...
Ultrasmall pure hexagonal phase NaYF4:Yb,Er is successfully prepared via the solvothermal method. Th...
Abstract Recently, materials revealing the upconversion (UC) phenomenon, which is a conversion of lo...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...
Novel flower-like alpha-NaYb(Mn)F-4:Er3+/Tm3+@NaYF4 upconversion nanoparticles (UCNPs) as luminescen...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...
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...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
© 2016 The Royal Society of Chemistry. Rare-earth doped upconversion nanocrystals have emerged as a ...
Recent technological developments require knowledge of temperature down to the micro- or even nanosc...
Accurate and reliable non-contact temperature sensors are imperative for industrial production and s...
Among several optical non-contact thermometry methods, luminescence thermometry is the most versatil...
Ultrasmall pure hexagonal phase NaYF4:Yb,Er is successfully prepared via the solvothermal method. Th...
Abstract Recently, materials revealing the upconversion (UC) phenomenon, which is a conversion of lo...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...
Novel flower-like alpha-NaYb(Mn)F-4:Er3+/Tm3+@NaYF4 upconversion nanoparticles (UCNPs) as luminescen...
This study explores potential of Er3+-Yb3+ doped phosphors for up-conversion luminescence thermometr...