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PMID: 27086764 Published · ppublish English

Prevention of thermal- and moisture-induced degradation of the photoluminescence properties of the Sr2Si5N8:Eu(2+) red phosphor by thermal post-treatment in N2-H2.

Physical chemistry chemical physics : PCCP ·Vol. 18 ·No. 18 ·0000-00-00

Zhang Chenning, Uchikoshi Tetsuo, Xie Rong-Jun, Liu Lihong, Cho Yujin, Sakka Yoshio, Hirosaki Naoto, Sekiguchi Takashi

Abstract

A red phosphor of Sr2Si5N8:Eu(2+) powder was synthesized by a solid state reaction. The synthesized phosphor was thermally post-treated in an inert and reductive N2-H2 mixed-gas atmosphere at 300-1200 °C. The main phase of the resultant phosphor was identified as Sr2Si5N8. A passivation layer of ∼0.2 μm thickness was formed around the phosphor surface via thermal treatment. Moreover, two different luminescence centers of Eu(SrI) and Eu(SrII) in the synthesized Sr2Si5N8:Eu(2+) phosphor were proposed to be responsible for 620 nm and 670 nm emissions, respectively. More interestingly, thermal- and moisture-induced degradation of PL intensity was effectively reduced by the formation of a passivation layer around the phosphor surface, that is, the relative PL intensity recovered 99.8% of the initial intensity even after encountering thermal degradation; both moisture-induced degraded external and internal QEs were merely 1% of the initial QEs. The formed surface layer was concluded to primarily prevent the Eu(2+) activator from being oxidized, based on the systemic analysis of the mechanisms of thermal- and moisture-induced degradation.

Article Info
Journal
Physical chemistry chemical physics : PCCP
Abbr.
Phys Chem Chem Phys
Published
0000-00-00
Indexed
2016-05-05
Updated
2016-05-05
Language
English
Country/Region
England
NLM ID
100888160
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