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Controlled Synthesis and Single-Particle Imaging of Bright, Sub-10 nm Lanthanide-Doped Upconverting Nanocrystals
被引:295
作者:
Ostrowski, Alexis D.
[1
]
Chan, Emory M.
[1
]
Gargas, Daniel J.
[1
]
Katz, Elan M.
[1
]
Han, Gang
[1
]
Schuck, P. James
[1
]
Milliron, Delia J.
[1
]
Cohen, Bruce E.
[1
]
机构:
[1] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Mol Foundry, Berkeley, CA 94720 USA
来源:
关键词:
upconverting nanoparticles;
lanthanides;
phosphorescence nanocrystal synthesis;
EARTH FLUORIDE NANOCRYSTALS;
UP-CONVERSION LUMINESCENCE;
SIZE;
PHASE;
NANOPARTICLES;
ULTRASMALL;
SHAPE;
NAYF4-YB;
ER;
YB3+;
D O I:
10.1021/nn3000737
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Phosphorescent nanoaystals that upconvert near-infrared light to emit at higher energies in the visible have shown promise as photostable, nonblinking, and background-free probes for biological imaging. However, synthetic control over upconverting nanocrystal size has been difficult, particularly for the brightest system, Yb3+- and Er3+-doped beta-phase NaYF4, for which there have been no reports of methods capable of producing sub-10 nm nanoaystals. Here we describe conditions for the controlled synthesis of protein-sized beta-phase NaYF4: 20% Yb3+, 2% Er3+ nanocrystals, from 43 to 15 nm In diameter. The size of the nanoaystals was modulated by varying the concentration of basic surfactants, Y3+:F- ratio, and reaction temperature, variables that also affected their crystalline phase. Increased reaction times favor formation of the desired beta-phase nanoaystals while having only a modest effect on nanocrystal size. Core/shell beta-phase NaYF4: 20% Yb3+, 2% Er3+/NaYF4 nanopartides less than 10 nm in total diameter exhibit higher luminescence quantum yields than comparable >25 nm diameter core nanopartides. Single-partide imaging of 9 nm core/shell nanopartides also demonstrates that they exhibit no measurable photobleaching or blinking. These results establish that small lanthanide-doped upconverting nanopartides can be synthesized without sacrificing brightness or stability, and these sub-10 nm nanopartides are ideally suited for single-particle imaging.
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页码:2686 / 2692
页数:7
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