Issue 41, 2015

Doped quantum dot@silica nanocomposites for white light-emitting diodes

Abstract

This work reports the use of a near-UV-LED chip in combination with blue, green-yellow and red emitting doped ZnSe QD@silica nanocomposites to construct a novel WLED with reduced scattering and no reabsorption. Blue, green-yellow and red emitting Cu or Mn doped ZnSe QDs with enlarged Stokes shifts and similar absorption peaks (360–410 nm) were synthesized in liquid paraffin in order to solve the reabsorption problem and also obtain balanced white emission spectra. Silica shells were then coated onto the doped QDs, allowing for the refractive index of the nanocomposites to be tailored while simultaneously improving their compatibility with the epoxy resin. The transparent doped ZnSe QD@SiO2/epoxy composite was then used as a light conversion and encapsulant material in combination with the near-UV-LED chip to fabricate the WLED. This fabricated WLED demonstrated high luminous efficiency and good color chromatics stability, suggesting that WLEDs based on highly fluorescent doped ZnSe QD@silica nanocomposites in combination with near-UV-LED chips may prove to be promising candidates for alternative light sources.

Graphical abstract: Doped quantum dot@silica nanocomposites for white light-emitting diodes

Supplementary files

Article information

Article type
Communication
Submitted
20 Jul 2015
Accepted
21 Aug 2015
First published
26 Aug 2015

Nanoscale, 2015,7, 17231-17236

Doped quantum dot@silica nanocomposites for white light-emitting diodes

B. Zhao, Y. Yao, M. Gao, K. Sun, J. Zhang and W. Li, Nanoscale, 2015, 7, 17231 DOI: 10.1039/C5NR04839G

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