| Literature DB >> 26281731 |
Jiajia Zhou1,2, Naoto Shirahata2,3, Hong-Tao Sun4, Batu Ghosh2, Makoto Ogawara5,6, Yu Teng1, Shifeng Zhou1, Rong Gui Sa Chu7, Minoru Fujii7, Jianrong Qiu1,8.
Abstract
A novel approach has been developed for the realization of efficient near-infrared to near-infrared (NIR-to-NIR) upconversion and down-shifting emission in nanophosphors. The efficient dual-modal NIR-to-NIR emission is realized in a β-NaGdF4/Nd(3+)@NaGdF4/Tm(3+)-Yb(3+) core-shell nanocrystal by careful control of the identity and concentration of the doped rare earth (RE) ion species and by manipulation of the spatial distributions of these RE ions. The photoluminescence results reveal that the emission efficiency increases at least 2-fold when comparing the materials synthesized in this study with those synthesized through traditional approaches. Hence, these core-shell structured nanocrystals with novel excitation and emission behaviors enable us to obtain tissue fluorescence imaging by detecting the upconverted and down-shifted photoluminescence from Tm(3+) and Nd(3+) ions, respectively. The reported approach thus provides a new route for the realization of high-yield emission from RE ion doped nanocrystals, which could prove to be useful for the design of optical materials containing other optically active centers.Entities:
Keywords: NIR-to-NIR; bioimaging; dual-mode; nanocrystals; rare earth ions
Year: 2013 PMID: 26281731 DOI: 10.1021/jz302122a
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475