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Lanthanide-based luminescent molecular thermometers

New Journal of Chemistry · 2011 · Vol. 35(6) · pp. 1177–1177
Carlos D. S. BritesPatrícia P. LimaNuno J. O. SilvaÁngel MillánV. S. AmaralFernando PalacioLuís D. Carlos

Abstract

Non-invasive accurate thermometers with high spatial resolution and operating at sub-micron scales, where the conventional methods are ineffective, are currently a very active field of research strongly stimulated in the last couple of years by the challenging demands of nanotechnology and biomedicine. This perspective offers a general overview of recent examples of accurate luminescent thermometers working at micrometric and nanometric scales, particularly those involving advanced Ln3+-based functional organic–inorganic hybrid materials.

Luminescence Properties of Advanced MaterialsLanthanide and Transition Metal ComplexesOptical properties and cooling technologies in crystalline materialsChemistryLanthanideLuminescenceNanotechnologyBiomedicineThermometerOptoelectronicsThermodynamicsMaterials sciencePhysics

Funding

  • Fundação para a Ciência e a Tecnologia
Citations
299
FWCI
10.24
field-weighted impact
References
45
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99%
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Citations per year
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References
Er3+/Yb3+ codoped Gd2O3 nano-phosphor for optical thermometry
Sensors and Actuators A Physical · 2008 · 319 citations
Review of temperature measurement
Review of Scientific Instruments · 2000 · 910 citations
Applications of hybrid organic–inorganic nanocomposites
Journal of Materials Chemistry · 2005 · 2,562 citations
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