Abstract Temperature is a critical parameter in biology, affecting the speed of reactions that occur in living systems. Nevertheless, measuring temperature with subcellular resolution (micrometric scale) and reliability remains a challenge to overcome. In this perspective, luminescence nanothermometry is a non‐contact technique which aims to measure temperature with a sub‐micrometric spatial resolution through the use of nanomaterials whose luminescence is affected solely by changes in temperature. Here, TiO2 nanoparticles doped with Eu+3 ions (Eu+3‐TiO2) are used for sensing temperature differences within single living cells. XRD, XPS, SEM, TEM and NEXAFS analysis allow the determination of the physicochemical characteristics of the Eu+3‐T...
TiO2 nanoparticles doped with different amounts of Nd3+ (0.5, 1, and 3 wt.%) were synthetized by the...
Europium(III) Nanoparticles are fabricated for sensing and imaging of physiological temperatures (se...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Luminescence temperature sensing with Eu3+ doped TiO2 nanoparticles was tested over a temperature ra...
Acquiring the temperature of a single living cell is not a trivial task. In this paper, we devise a ...
In recent years, infrared emitting luminescent nanothermometers have attracted significant attention...
Temperature monitoring is useful in medical diagnosis, and essential during hyperthermia treatments ...
The only way to get thermal images of living organisms without perturbing them is to use luminescent...
Luminescence nanothermometry is promising for noninvasive probing of temperature in biological micro...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
Temperature is a key environmental variable that affects almost all natural and engineered systems f...
The homeostasis of body temperature and energy balance is one of the major principles in biology. Na...
© 2020 by the authors.The bifunctional possibilities of Tm,Yb:GdVO4@SiO2 core-shell nanoparticles fo...
Recent studies using intracellular thermometers have shown that the temperature inside cultured sing...
The performance of Sm3+ doped TiO2 nanoparticles for luminescence temperature sensing was tested ove...
TiO2 nanoparticles doped with different amounts of Nd3+ (0.5, 1, and 3 wt.%) were synthetized by the...
Europium(III) Nanoparticles are fabricated for sensing and imaging of physiological temperatures (se...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Luminescence temperature sensing with Eu3+ doped TiO2 nanoparticles was tested over a temperature ra...
Acquiring the temperature of a single living cell is not a trivial task. In this paper, we devise a ...
In recent years, infrared emitting luminescent nanothermometers have attracted significant attention...
Temperature monitoring is useful in medical diagnosis, and essential during hyperthermia treatments ...
The only way to get thermal images of living organisms without perturbing them is to use luminescent...
Luminescence nanothermometry is promising for noninvasive probing of temperature in biological micro...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
Temperature is a key environmental variable that affects almost all natural and engineered systems f...
The homeostasis of body temperature and energy balance is one of the major principles in biology. Na...
© 2020 by the authors.The bifunctional possibilities of Tm,Yb:GdVO4@SiO2 core-shell nanoparticles fo...
Recent studies using intracellular thermometers have shown that the temperature inside cultured sing...
The performance of Sm3+ doped TiO2 nanoparticles for luminescence temperature sensing was tested ove...
TiO2 nanoparticles doped with different amounts of Nd3+ (0.5, 1, and 3 wt.%) were synthetized by the...
Europium(III) Nanoparticles are fabricated for sensing and imaging of physiological temperatures (se...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...