Trabajo presentado a: 16th International Conference on Luminescence (ICL'11).Non-invasive accurate thermometers with high spatial resolution and operating at sub-micron scales, where the conventional methods are ineffective, is currently a very active field of research strongly stimulated in the last couple of years by the challenging demands of nanotechnology and biomedicine. Here we report on the temperature operation range, spatial resolution and long-term stability of Eu3+/Tb3+ luminescent thermometers involving magnetic hybrid nanoparticles and di-ureasil thin films.Peer Reviewe
© 2018, The Author(s). The optical thermometer has shown great promise for use in the fields of aero...
Nano-sized (50-70 nm) Periodic Mesoporous Organosilica (PMO) was synthesized using 5% N,N-bis(trimet...
Luminescence thermometry allows the remote monitoring of the temperature and holds the promise to dr...
Temperature is a fundamental thermodynamic variable, the measurement of which is crucial in countles...
Present technological demands in micro and nanoelectronics, photonics, micro and nanofluidics, and b...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
International audienceThe first example of ratiometric luminescent thermometers based on lanthanide ...
A luminescent mixed lanthanide metal–organic framework approach has been realized to explore lumines...
Whereas efficient and sensitive nanoheaters and nanothermometers are demanding tools in modern bio- ...
Luminescence thermometry is used in a variety of research fields for noninvasive temperature sensing...
Here, the excellent thermal sensing capability of a multinuclear lanthanide polyoxometalate in the c...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Europium(III) Nanoparticles are fabricated for sensing and imaging of physiological temperatures (se...
Luminescence thermometry is used in a variety of research fields for noninvasive temperature sensing...
Accurate measurement of the temperature is crucial as it determines the dynamics of almost any syste...
© 2018, The Author(s). The optical thermometer has shown great promise for use in the fields of aero...
Nano-sized (50-70 nm) Periodic Mesoporous Organosilica (PMO) was synthesized using 5% N,N-bis(trimet...
Luminescence thermometry allows the remote monitoring of the temperature and holds the promise to dr...
Temperature is a fundamental thermodynamic variable, the measurement of which is crucial in countles...
Present technological demands in micro and nanoelectronics, photonics, micro and nanofluidics, and b...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
International audienceThe first example of ratiometric luminescent thermometers based on lanthanide ...
A luminescent mixed lanthanide metal–organic framework approach has been realized to explore lumines...
Whereas efficient and sensitive nanoheaters and nanothermometers are demanding tools in modern bio- ...
Luminescence thermometry is used in a variety of research fields for noninvasive temperature sensing...
Here, the excellent thermal sensing capability of a multinuclear lanthanide polyoxometalate in the c...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Europium(III) Nanoparticles are fabricated for sensing and imaging of physiological temperatures (se...
Luminescence thermometry is used in a variety of research fields for noninvasive temperature sensing...
Accurate measurement of the temperature is crucial as it determines the dynamics of almost any syste...
© 2018, The Author(s). The optical thermometer has shown great promise for use in the fields of aero...
Nano-sized (50-70 nm) Periodic Mesoporous Organosilica (PMO) was synthesized using 5% N,N-bis(trimet...
Luminescence thermometry allows the remote monitoring of the temperature and holds the promise to dr...