Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical thermometers in the biological windows. A ratiometric approach based on the relative changes in the intensities of different lanthanide (Nd3+ and Yb3+) NIR emissions was applied to investigate the thermometric properties of the nanoparticles. It was found that an appropriate doping with Er3+ ions can increase the thermometric properties of the Nd3+-Yb3+ coupled systems. In addition, a core containing Yb3+ and Tm3+ can generate light in the visible and UV regions upon near-infrared (NIR) laser excitation at 980 nm. The multishell structure combined with the rational choice of dopants proves to be particularly important to control and enhance t...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
Owing to its high reliability and accuracy, the ratiometric luminescent thermometer can provide non-...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermome...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Luminescence nanothermometry is promising for noninvasive probing of temperature in biological micro...
CaF2 nanoparticles activated with Nd3þ ions have been investigated as potential optical nanothermome...
CaF2 nanoparticles activated with Nd3þ ions have been investigated as potential optical nanothermome...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
In recent years, infrared emitting luminescent nanothermometers have attracted significant attention...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
Owing to its high reliability and accuracy, the ratiometric luminescent thermometer can provide non-...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermome...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Strontium fluoride nanoparticles activated with Nd3+ ions were studied as nanosized optical thermom...
Luminescence nanothermometry is promising for noninvasive probing of temperature in biological micro...
CaF2 nanoparticles activated with Nd3þ ions have been investigated as potential optical nanothermome...
CaF2 nanoparticles activated with Nd3þ ions have been investigated as potential optical nanothermome...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
In recent years, infrared emitting luminescent nanothermometers have attracted significant attention...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...