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Designed synthesis of solid and hollow Cu2- xTe nanocrystals with tunable near-infrared localized surface plasmon resonance
Journal article   Peer reviewed

Designed synthesis of solid and hollow Cu2- xTe nanocrystals with tunable near-infrared localized surface plasmon resonance

Hong-Jie Yang, Chia-Yu Chen, Fang-Wei Yuan and Hsing-Yu Tuan
Journal of Physical Chemistry C, Vol.117(42), pp.21955-21964
2013

Abstract

Solid and hollow structures of Cu 2-x Te nanocrystals are synthesized by the injection of a Te-TOP solution at different reaction times. Both types of Cu 2-x Te nanocrystals exhibit an intense absorption peak (localized surface plasmon resonance (LSPR)) in the near-infrared region, arising from excess holes in the valence band, and high molar extinction coefficients of 2.6 × 10 7 M -1 cm -1 at 1150 nm and 8.1 × 10 7 M -1 cm -1 at 1200 nm are demonstrated for the solid-type and hollow-type Cu 2-x Te nanocrystals, respectively. The experimentally observed extinction spectra and calculated extinction spectra based on the electrostatic approximation are studied. The LSPR responses in the near-infrared (NIR) region for both solid and hollow Cu 2-x Te nanocrystals are affected by the refractive index of the medium, whereas the NIR resonance shift is more obvious in the hollow-type Cu 2-x Te nanocrystals. Furthermore, the localized surface plasmon band of the Cu 2-x Te nanostructures can be tuned by post processing via oxidation and reduction methods (controlling their degree of copper deficiency). © 2013 American Chemical Society.

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