Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for Single Particle Imaging of Stimuli

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Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
Optical Trapping of Luminescent Nanothermometers
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
High monodisperse nanospheres Gd2O3: Yb3+, Er3+ with strong upconversion emission fabricated by synergistic chemical method
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
Er 3+ doped nanoparticles as upconversion thermometer probes in confined fluids - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D3CP02218H
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
High monodisperse nanospheres Gd2O3: Yb3+, Er3+ with strong upconversion emission fabricated by synergistic chemical method
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
The effect of nanoparticle size on in vivo pharmacokinetics and cellular interaction
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
The effect of nanoparticle size on in vivo pharmacokinetics and cellular interaction
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
Luminescence‐Based Infrared Thermal Sensors: Comprehensive Insights - Fahad - Small - Wiley Online Library
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
The effect of nanoparticle size on in vivo pharmacokinetics and cellular interaction
Lanthanide-Based Nanosensors: Refining Nanoparticle Responsiveness for  Single Particle Imaging of Stimuli
Nanoparticles: advances in synthesis, characterization, theoretical modelling and applications
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