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Kailin Song

Researcher at Shanghai University

Publications -  21
Citations -  231

Kailin Song is an academic researcher from Shanghai University. The author has contributed to research in topics: Ceramic & Photon upconversion. The author has an hindex of 6, co-authored 12 publications receiving 177 citations.

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Enhancing upconversion luminescence of NaYF4:Yb/Er nanocrystals by Mo3+ doping and their application in bioimaging

TL;DR: It was found that the upconversion luminescence intensities of the green and red emissions of UCNs co-doped with 10 mol% Mo(3+) ions were enhanced by 6 and 8 times, respectively, which offers a potential increase in the overall detectability of upconverting nanocrystals.
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Synthesis of a Novel Core–Shell Nanocomposite Ag@SiO2@Lu2O3:Gd/Yb/Er for Large Enhancing Upconversion Luminescence and Bioimaging

TL;DR: A novel Ag core and upconversion nanocrystal shell based nanocomposite Ag@SiO2@Lu2O3:Gd/Yb/Er for metal-enhancedUpconversion luminescence was fabricated successfully, and its morphology, crystalline phase, composition, optical property, and cell imaging application were investigated.
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Synthesis of NaLuF4-based nanocrystals and large enhancement of upconversion luminescence of NaLuF4:Gd, Yb, Er by coating an active shell for bioimaging

TL;DR: This study presents a facile method for the synthesis of NaLuF4-based upconversion nanocrystals with intense luminescence that can be used as potential fluorescent probes for sensitive bioimaging, and the suggested mechanism could provide new insights into fabrication of upconverted materials with high upconverting fluorescence.
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Preparation of NaLuF4:Gd, Yb, Tm–TiO2 nanocomposite with high catalytic activity for solar light assisted photocatalytic degradation of dyes and wastewater

TL;DR: In this article, a new nanocomposite NaLuF4:Gd, Yb, Tm-TiO2 photocatalyst was developed, which can not only efficiently degrade single dyes, but also mixtures and dye wastewater.
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Synthesis of NaYF4, NaLuF4 and NaGdF4-based upconversion nanocrystals with hydro (solvo) thermal methods.

TL;DR: This first time to systematically compare three kinds of host-based nanocrystals, which are prepared by two different approaches with various lanthanide ions doped could provide new insight into fabrication of upconversion nanocry crystals with intense UCL and controllable morphology and size via using suitable doping ions, host materials and efficient approaches.