Issue 37, 2015

Insights into luminescence quenching and detecting trap distribution in Ba2Si5N8:Eu2+ phosphor with comprehensive considerations of temperature-dependent luminescence behaviors

Abstract

Probing intrinsic luminescence behaviors in known inorganic hosts is still of great importance to understand corresponding mechanisms and guide their possible applications. Nitride phosphor Ba2Si5N8:Eu2+, which shows interesting reddish-orange persistent luminescence but more famous for phosphor-conversion in white-LEDs, lacks adequate inquiries about two-peak emission, the full temperature range of thermal quenching and trap distribution. In this article, temperature-dependent photoluminescence, afterglow decay curves and photo-stimulated persistent luminescence of Ba2Si5N8:Eu2+ phosphors were investigated in detail. Evaluation of energy transfer at two emitting sites and luminescence quenching was based on careful investigation of photoluminescence at various temperatures. Furthermore, we proposed an integrated temperature-dependent afterglow decay curve method to estimate the trap density distribution in Ba2Si5N8:Eu2+ phosphor, accompanied by thermo-luminescence and photo-stimulated persistent luminescence analysis. Results indicate that integrating afterglow decay curves of various temperatures can be a useful attempt to detect trap distribution in charge carrier trapped materials.

Graphical abstract: Insights into luminescence quenching and detecting trap distribution in Ba2Si5N8:Eu2+ phosphor with comprehensive considerations of temperature-dependent luminescence behaviors

Supplementary files

Article information

Article type
Paper
Submitted
22 Jun 2015
Accepted
16 Aug 2015
First published
18 Aug 2015

J. Mater. Chem. C, 2015,3, 9572-9579

Insights into luminescence quenching and detecting trap distribution in Ba2Si5N8:Eu2+ phosphor with comprehensive considerations of temperature-dependent luminescence behaviors

J. Wang, H. Zhang, Y. Liu, H. Dong, B. Lei, M. Zheng, Y. Xiao, M. Peng and J. Wang, J. Mater. Chem. C, 2015, 3, 9572 DOI: 10.1039/C5TC01849H

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