Luminescent thermometers working at the nanoscale with high spatial resolution, where the conventional methods are ineffective, have emerged over the last couple of years as a very active field of research. Lanthanide-based materials are among the most versatile thermal probes used in luminescent nanothermometers. Here, nanorods of metal organic framework Tb<sub>0.99</sub>Eu<sub>0.01</sub>(BDC)<sub>1.5</sub>(H<sub>2</sub>O)<sub>2</sub> (BDC = 1-4-benzendicarboxylate) have been prepared by the reverse microemulsion technique and characterized and their photoluminescence properties studied from room temperature to 318 K. Aqueous suspensions of these nanoparticles display an excellent performance as ratiometric luminescent nanothermometers in ...
Owing to its high reliability and accuracy, the ratiometric luminescent thermometer can provide non-...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are a new typ...
Luminescent MOF materials with tunable emissions and energy/charge transfer processes have been exte...
Accurate, noninvasive, and self-referenced temperature measurements at the submicrometer scale are o...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are proposed ...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are proposed ...
A ratiometric thermometer based on a mixed-metal Ln(III) metal-organic framework is reported that ha...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
A luminescent mixed lanthanide metal–organic framework approach has been realized to explore lumines...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Copyright © 2019 American Chemical Society. Thermally responsive fluorescent nanoparticles can be co...
Nanothermometry is the study of temperature at the submicron scale with a broad range of potential a...
International audienceThe first example of ratiometric luminescent thermometers based on lanthanide ...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are a new typ...
In this work, we prepared two types of isostructural Ln3+-based metal–organic frameworks (LnMOFs) un...
Owing to its high reliability and accuracy, the ratiometric luminescent thermometer can provide non-...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are a new typ...
Luminescent MOF materials with tunable emissions and energy/charge transfer processes have been exte...
Accurate, noninvasive, and self-referenced temperature measurements at the submicrometer scale are o...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are proposed ...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are proposed ...
A ratiometric thermometer based on a mixed-metal Ln(III) metal-organic framework is reported that ha...
There is an increasing demand for accurate, non-invasive and self-reference temperature measurements...
A luminescent mixed lanthanide metal–organic framework approach has been realized to explore lumines...
Recently, there has been observed huge progress in the advancement of remote optical nanothermometry...
Copyright © 2019 American Chemical Society. Thermally responsive fluorescent nanoparticles can be co...
Nanothermometry is the study of temperature at the submicron scale with a broad range of potential a...
International audienceThe first example of ratiometric luminescent thermometers based on lanthanide ...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are a new typ...
In this work, we prepared two types of isostructural Ln3+-based metal–organic frameworks (LnMOFs) un...
Owing to its high reliability and accuracy, the ratiometric luminescent thermometer can provide non-...
Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are a new typ...
Luminescent MOF materials with tunable emissions and energy/charge transfer processes have been exte...