Issue 35, 2012

Energy transfer and photoluminescence modification in Yb–Er–Tm triply doped Y2Ti2O7 upconversion inverse opal

Abstract

In this article, we fabricated Y2Ti2O7: Yb, Er, Tm upconversion inverse opal photonic crystals with energy transfer between Er3+ and Tm3+, and investigated the influence of the photonic band gap on the energy transfer between Tm3+ and Er3+. It is interesting that strong modification of the steady state upconversion emission spectra is observed, and the green or red upconversion emission from Er3+ was suppressed in the inverse opal. More significantly, the energy transfer between Tm3+ and Er3+ is enhanced by suppression of the red upconversion emission of Er3+, thus the blue upconversion emission from Tm3+ is considerably improved in the inverse opals. Additionally, the mechanisms for upconversion emission of the Y2Ti2O7: Yb, Er, Tm inverse opal are discussed. We believe that the present work will be valuable for the foundational study of upconversion emission modification and the application of upconversion displays and short wavelength upconversion lasers.

Graphical abstract: Energy transfer and photoluminescence modification in Yb–Er–Tm triply doped Y2Ti2O7 upconversion inverse opal

Supplementary files

Article information

Article type
Paper
Submitted
28 May 2012
Accepted
19 Jul 2012
First published
23 Jul 2012

J. Mater. Chem., 2012,22, 18558-18563

Energy transfer and photoluminescence modification in Yb–Er–Tm triply doped Y2Ti2O7 upconversion inverse opal

D. Yan, J. Zhu, H. Wu, Z. Yang, J. Qiu, Z. Song, X. Yu, Y. Yang, D. Zhou, Z. Yin and R. Wang, J. Mater. Chem., 2012, 22, 18558 DOI: 10.1039/C2JM33418F

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