Expanding the Spectral Tunability of Plasmonic Resonances in Doped Metal-Oxide Nanocrystals through Cooperative Cation-Anion Codoping

  • Ye, Xingchen; 
  • Fei, Jiayang; 
  • Diroll, Benjamin T.; 
  • Paik, Taejong; 
  • Murray, Christopher B.
Citations

WEB OF SCIENCE

143
Citations

SCOPUS

147

초록

We present a generalized cation anion codoping methodology for the synthesis of monodisperse, doped metal-oxide nanocrystals (NCs) that exhibit near-infrared localized surface plasmon resonance (LSPR) with the highest reported quality factors. We demonstrate that, in addition to the use of common cation dopants, the incorporation of fluorine into the lattice as an anion dopant can further increase the free-carrier concentration within individual NCs; this supports the cooperative effects of mixed cation anion doping in shifting the LSPR to higher energies. As a result, this method allows the LSPR of doped metal-oxide NCs to become tunable across a significantly broader wavelength range (1.5-3.3 pm), circumventing the prior limitations on the highest possible LSPR energies associated with single-element doping for a given oxide host. The strategy of cation anion codoping can offer new possibilities for the chemical design of doped semiconductor and metal-oxide NCs with tailored LSPR characteristics.

키워드

COPPER SULFIDE NANOCRYSTALS; THIN-FILMS; SIZE CONTROL; SEMICONDUCTOR; SHAPE; TRANSPARENT; PHASE; CDO; NANOPARTICLES; TRANSMITTANCE
제목
Expanding the Spectral Tunability of Plasmonic Resonances in Doped Metal-Oxide Nanocrystals through Cooperative Cation-Anion Codoping
저자
Ye, Xingchen; Fei, Jiayang; Diroll, Benjamin T.; Paik, Taejong; Murray, Christopher B.
DOI
10.1021/ja5039903
발행일
2014-08
유형
Article
저널명
Journal of the American Chemical Society
권
136
호
33
페이지
11680 ~ 11686