Hot‐Injection Synthesis of Manganese‐Ion‐Doped NaYF4:Yb,Er Nanocrystals with Red Up‐Converting Emission and Tunable Diameter
Identifieur interne : 000580 ( Main/Curation ); précédent : 000579; suivant : 000581Hot‐Injection Synthesis of Manganese‐Ion‐Doped NaYF4:Yb,Er Nanocrystals with Red Up‐Converting Emission and Tunable Diameter
Auteurs : Zhennan Wu [République populaire de Chine] ; Min Lin [République populaire de Chine] ; Sen Liang [République populaire de Chine] ; Yi Liu [République populaire de Chine] ; Hao Zhang [République populaire de Chine] ; Bai Yang [République populaire de Chine]Source :
- Particle & Particle Systems Characterization [ 0934-0866 ] ; 2013-04.
English descriptors
- KwdEn :
- Absorption spectra, Aforementioned results, Anion cavities, Average diameter, Chem, Crystal phase, Cubic nayf4, Cubic phase, Diffusion rate, Doped, Doping, Emission color, Emission spectra, Feed ratio, Growth temperature, Heating rate, Hexagonal, Hexagonal nayf4, Hexagonal phase, Host lattice, Information figure, Information table, Interior doping, Lattice, Lattice interstice, Luminescent images, Nano, Nano lett, Nayf4, Nayf4 cell, Nayf4 crystal, Nayf4 lattice, Oleic acid, Phase transformation, Precursor solution, Room temperature, Scanning electron microscope, Size distribution, Small size, Surface adsorption, Surface doping, Technical grade, Ucncs, Verlag gmbh, Wang, Weinheim part, Zhang.
- Teeft :
- Absorption spectra, Aforementioned results, Anion cavities, Average diameter, Chem, Crystal phase, Cubic nayf4, Cubic phase, Diffusion rate, Doped, Doping, Emission color, Emission spectra, Feed ratio, Growth temperature, Heating rate, Hexagonal, Hexagonal nayf4, Hexagonal phase, Host lattice, Information figure, Information table, Interior doping, Lattice, Lattice interstice, Luminescent images, Nano, Nano lett, Nayf4, Nayf4 cell, Nayf4 crystal, Nayf4 lattice, Oleic acid, Phase transformation, Precursor solution, Room temperature, Scanning electron microscope, Size distribution, Small size, Surface adsorption, Surface doping, Technical grade, Ucncs, Verlag gmbh, Wang, Weinheim part, Zhang.
Abstract
The hot‐injection synthesis of manganese ion (Mn2+)‐doped NaYF4:Yb,Er nanocrystals (NCs) with red up‐converting emission and the diameter tunable from 8 to 15 nm is demonstrated. The Mn2+ dosage, growth temperature, and heating rate determine the doping modes, including surface doping and interior doping. Surface doping produces small NCs and interior doping contributes to the red emission.
Url:
DOI: 10.1002/ppsc.201200106
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<term>Aforementioned results</term>
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<term>Average diameter</term>
<term>Chem</term>
<term>Crystal phase</term>
<term>Cubic nayf4</term>
<term>Cubic phase</term>
<term>Diffusion rate</term>
<term>Doped</term>
<term>Doping</term>
<term>Emission color</term>
<term>Emission spectra</term>
<term>Feed ratio</term>
<term>Growth temperature</term>
<term>Heating rate</term>
<term>Hexagonal</term>
<term>Hexagonal nayf4</term>
<term>Hexagonal phase</term>
<term>Host lattice</term>
<term>Information figure</term>
<term>Information table</term>
<term>Interior doping</term>
<term>Lattice</term>
<term>Lattice interstice</term>
<term>Luminescent images</term>
<term>Nano</term>
<term>Nano lett</term>
<term>Nayf4</term>
<term>Nayf4 cell</term>
<term>Nayf4 crystal</term>
<term>Nayf4 lattice</term>
<term>Oleic acid</term>
<term>Phase transformation</term>
<term>Precursor solution</term>
<term>Room temperature</term>
<term>Scanning electron microscope</term>
<term>Size distribution</term>
<term>Small size</term>
<term>Surface adsorption</term>
<term>Surface doping</term>
<term>Technical grade</term>
<term>Ucncs</term>
<term>Verlag gmbh</term>
<term>Wang</term>
<term>Weinheim part</term>
<term>Zhang</term>
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<term>Anion cavities</term>
<term>Average diameter</term>
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<term>Crystal phase</term>
<term>Cubic nayf4</term>
<term>Cubic phase</term>
<term>Diffusion rate</term>
<term>Doped</term>
<term>Doping</term>
<term>Emission color</term>
<term>Emission spectra</term>
<term>Feed ratio</term>
<term>Growth temperature</term>
<term>Heating rate</term>
<term>Hexagonal</term>
<term>Hexagonal nayf4</term>
<term>Hexagonal phase</term>
<term>Host lattice</term>
<term>Information figure</term>
<term>Information table</term>
<term>Interior doping</term>
<term>Lattice</term>
<term>Lattice interstice</term>
<term>Luminescent images</term>
<term>Nano</term>
<term>Nano lett</term>
<term>Nayf4</term>
<term>Nayf4 cell</term>
<term>Nayf4 crystal</term>
<term>Nayf4 lattice</term>
<term>Oleic acid</term>
<term>Phase transformation</term>
<term>Precursor solution</term>
<term>Room temperature</term>
<term>Scanning electron microscope</term>
<term>Size distribution</term>
<term>Small size</term>
<term>Surface adsorption</term>
<term>Surface doping</term>
<term>Technical grade</term>
<term>Ucncs</term>
<term>Verlag gmbh</term>
<term>Wang</term>
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<front><div type="abstract">The hot‐injection synthesis of manganese ion (Mn2+)‐doped NaYF4:Yb,Er nanocrystals (NCs) with red up‐converting emission and the diameter tunable from 8 to 15 nm is demonstrated. The Mn2+ dosage, growth temperature, and heating rate determine the doping modes, including surface doping and interior doping. Surface doping produces small NCs and interior doping contributes to the red emission.</div>
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