Issue 41, 2010

Broadband spectral modification from visible light to near-infrared radiation using Ce3+–Er3+ codoped yttrium aluminium garnet

Abstract

Broadband spectral conversion from visible light to near-infrared radiation in Ce3+Er3+ codoped yttrium aluminium garnet is reported. Excitation, emission, time-resolved luminescence spectra and fluorescence decay curves have been measured to prove the energy transfer from Ce3+ to Er3+. The broadband and strong absorption of Ce3+, efficient energy transfer from Ce3+ to Er3+, and three-photon quantum cutting process in Er3+ ions result in efficient near-infrared emission when excited by 400–500 nm broad visible light. The energy of the Er3+ (4I13/24I15/2) transition matches well with the band gap of germanium (Eg ∼ 0.785 eV). Ce3+Er3+ codoped yttrium aluminium garnet is promising for the enhancement of conversion efficiency of germanium solar cells.

Graphical abstract: Broadband spectral modification from visible light to near-infrared radiation using Ce3+–Er3+ codoped yttrium aluminium garnet

Article information

Article type
Paper
Submitted
13 Apr 2010
Accepted
29 Jul 2010
First published
27 Sep 2010

Phys. Chem. Chem. Phys., 2010,12, 13759-13762

Broadband spectral modification from visible light to near-infrared radiation using Ce3+Er3+ codoped yttrium aluminium garnet

J. Zhou, Y. Teng, X. Liu, S. Ye, Z. Ma and J. Qiu, Phys. Chem. Chem. Phys., 2010, 12, 13759 DOI: 10.1039/C0CP00204F

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