AIChE Journal · 2021 · 14 citations · 42 references
Optical MaterialsEngineeringLuminescent GlassLaser ApplicationsOptoelectronic DevicesChemistryCalcium Molybdate PhosphorsLuminescence PropertyScalable SynthesisPhosphorescence ImagingOptical PropertiesMaterials ScienceAbstract Luminescent ThermometryHigh SensitivityOptoelectronic MaterialsUpconversion LuminescenceOptical SensorsBiomolecular EngineeringUpconversion Luminescent ThermometerCamoo 4Phosphorescence
Abstract Luminescent thermometry is a noninvasive method of temperature detection with high sensitivity and response speed. The present study demonstrated the process‐intensified synthesis of ytterbium and erbium codoped calcium molybdate phosphors (CaMoO 4 :Yb 3+ /Er 3+ ). The experiment involved the initial premixing of the precursors using a high‐gravity rotating packed bed (RPB) reactor and subsequent calcination processing. The pronounced mass transfer and micromixing of the reactants in the RPB facilitated the scalable and controllable synthesis of CaMoO 4 :Yb 3+ /Er 3+ particles with submicron sizes and regular morphologies. The CaMoO 4 :Yb 3+ /Er 3+ particles exhibited a bright‐green emission with temperature‐dependent luminescence characteristics under 980 nm laser irradiation. Furthermore, the maximum absolute sensitivity was determined to be 0.02837 K −1 . These results indicated that the synthesized product was a suitable candidate for application in upconversion luminescent thermometers capable of temperature sensing at the microscale.
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Abdul K. Parchur, Amresh I. Prasad, Anees A. Ansari et al. · Dalton Transactions · 2012 · 213 citations
Materials Science, Inorganic Chemistry, Chemical Engineering +14
Hanlu Zhang, Dengfeng Peng, Wei Wang et al. · The Journal of Physical Chemistry C · 2015 · 151 citations
Optical Materials, Engineering, Infrared-laser-induced Upconversion +19