Efficient tailoring of upconversion emissions in lanthanide-doped nanocrystals is of great significance for extended optical applications. Here, we present a facile and highly effective method to tailor the upconversion selectivity by engineering the local structure of lanthanides in NaxREF3+x nanocrystals. The local structure engineering was achieved through precisely tuning the composition of nanocrystals, with different [Na]/[RE] ([F]/[RE]) ratio. It was found that the lattice parameter as well as the coordination number and local symmetry of lanthanides changed with the composition. A significant difference in the red to green emission ratio, which varied from 1.9 to 71 and 1.6 to 116, was observed for NaxYF3+x:Yb,Er and NaxGdF3+x:Yb,Er...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
Heavily doped nanocrystals of host KLaF4 with rare earth (RE3+ = Er3+, Tm3+, and Yb3+) ions prepared...
Efficient tailoring of upconversion emissions in lanthanide-doped nanocrystals is of great significa...
Synthesis of lanthanide-doped upconversion nanocrystals (LDUNs) with controlled morphology and lumin...
With excellent luminescent properties, lanthanide based upconversion nanocrystals have aroused great...
In this study, monodispersed and high-quality hexagonal phase LaF 3 nanocrystals with different shap...
The fundamental understanding of lanthanide-doped upconverted nanocrystals remains a frontier area o...
The structure of the host lattice has a substantial influence on the optical properties of lanthanid...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
Rare-earth-based nanomaterials have recently drawn considerable attention because of their unique en...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
Inert passivation can significantly enhance the upconversion intensity of lanthanide ion doped nanoc...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
Heavily doped nanocrystals of host KLaF4 with rare earth (RE3+ = Er3+, Tm3+, and Yb3+) ions prepared...
Efficient tailoring of upconversion emissions in lanthanide-doped nanocrystals is of great significa...
Synthesis of lanthanide-doped upconversion nanocrystals (LDUNs) with controlled morphology and lumin...
With excellent luminescent properties, lanthanide based upconversion nanocrystals have aroused great...
In this study, monodispersed and high-quality hexagonal phase LaF 3 nanocrystals with different shap...
The fundamental understanding of lanthanide-doped upconverted nanocrystals remains a frontier area o...
The structure of the host lattice has a substantial influence on the optical properties of lanthanid...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
Rare-earth-based nanomaterials have recently drawn considerable attention because of their unique en...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
Inert passivation can significantly enhance the upconversion intensity of lanthanide ion doped nanoc...
Lanthanide-doped upconverting nanostructures are promising materials in the generation of imaging ag...
The optical efficiency of lanthanide-based upconversion is intricately related to the crystalline ho...
Heavily doped nanocrystals of host KLaF4 with rare earth (RE3+ = Er3+, Tm3+, and Yb3+) ions prepared...