M<sup>2+</sup> Doping Induced Simultaneous Phase/Size Control and Remarkable Enhanced Upconversion Luminescence of NaLnF<sub>4</sub> Probes for Optical-Guided Tiny Tumor Diagnosis.
basic_science · Level V
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- Record sourced from PubMed, PMID 28257557.
- Also identified by DOI 10.1002/adhm.201601231.
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Abstract
Doping has played a vital role in constructing desirable hybrid materials with tunable functions and properties via incorporating atoms into host matrix. Herein, a simple strategy for simultaneously modifying the phase, size, and upconversion luminescence (UCL) properties of the NaLnF<sub>4</sub> (Ln = Y, Yb) nanocrystals by high-temperature coprecipitation through nonequivalent M<sup>2+</sup> doping (M = Mg<sup>2+</sup> , Co<sup>2+</sup> ) has been demonstrated. The phase transformation from cubic to hexagonal is readily achieved by doping M<sup>2+</sup> . Compared with Mg-free sample, a remarkable enhancement of overall UCL (≈27.5 times) is obtained by doping Mg<sup>2+</sup> . Interestingly, owing to the efficient UCL, red UCL-guided tiny tumor (down to 3 mm) diagnosis is demonstrated for the first time. The results open up a new way of designing high efficient UCL probe with combination of hexagonal phase and small size for tiny tumor detection.
Medical subject headings
- Cobalt
- Luminescence
- Luminescent Measurements