Ratiometric optical thermometry is one of the most promising techniques for contactless temperature sensing. However, despite the efforts devoted in the last decades, the development of nanothermometers characterized by high reliability along with suitable sensitivity (Sr > 1% K-1) and thermal resolution (δT < 0.5 K) in the physiological temperature range is still a critical challenge in the biological field. Here, we propose uniform Yb,Tm co-doped crystalline Bi2SiO5@SiO2 hollow upconverting nanoparticles as red-NIR emitting nanophosphors for ratiometric optical thermometry. The synthetic procedure leads to double-layered Bi2SiO5:Yb,Tm@SiO2 hollow nanoparticles. The thermometric performances are investigated in a wide temperature ran...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
The design and development of effective luminescent thermal sensors have been driving technological ...
Ratiometric optical thermometry is one of the most promising techniques for contactless temperature ...
The development of nanomaterials with high sensitivity to external stimuli such as temperature is cr...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Luminescence thermometry is one of the most currently studied approaches among the non-contact and n...
openUpconversion phosphor materials, usually consisting of crystals doped with lanthanide ions, are ...
Upconverting core@shell type β-NaYF4:Yb3+–Er3+@SiO2 nanorods have been obtained by a two-step synthe...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
© 2020 The Authors. Advanced Optical Materials published by Wiley-VCH GmbH A ratiometric optical the...
Lanthanide-doped luminescent nanoparticles are an appealing system for nanothermometry with biomedic...
© 2020 by the authors.The bifunctional possibilities of Tm,Yb:GdVO4@SiO2 core-shell nanoparticles fo...
Lanthanide-doped luminescent nanoparticles are an appealing system for nanothermometry with biomedic...
Ratiometric luminescence thermometry with trivalent lanthanide ions and their 4fn energy levels is a...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
The design and development of effective luminescent thermal sensors have been driving technological ...
Ratiometric optical thermometry is one of the most promising techniques for contactless temperature ...
The development of nanomaterials with high sensitivity to external stimuli such as temperature is cr...
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very smal...
Luminescence thermometry is one of the most currently studied approaches among the non-contact and n...
openUpconversion phosphor materials, usually consisting of crystals doped with lanthanide ions, are ...
Upconverting core@shell type β-NaYF4:Yb3+–Er3+@SiO2 nanorods have been obtained by a two-step synthe...
The rapid development of nanomaterials with unique size-tunable properties forms the basis for a var...
© 2020 The Authors. Advanced Optical Materials published by Wiley-VCH GmbH A ratiometric optical the...
Lanthanide-doped luminescent nanoparticles are an appealing system for nanothermometry with biomedic...
© 2020 by the authors.The bifunctional possibilities of Tm,Yb:GdVO4@SiO2 core-shell nanoparticles fo...
Lanthanide-doped luminescent nanoparticles are an appealing system for nanothermometry with biomedic...
Ratiometric luminescence thermometry with trivalent lanthanide ions and their 4fn energy levels is a...
Recent technological developments require knowledge of temperature down to the micro- or even nano-s...
Lanthanide-activated SrF2 nanoparticles with a multishell architecture were investigated as optical ...
The design and development of effective luminescent thermal sensors have been driving technological ...