ホソカワ粉体工学振興財団年報
Online ISSN : 2189-4663
ISSN-L : 2189-4663
研究助成成果報告
白色LED用窒化物蛍光体の微粒子プロセス開発
末廣 隆之
著者情報
研究報告書・技術報告書 オープンアクセス

2009 年 17 巻 p. 67-70

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In the last few years, highly covalent Si3N4-based oxynitrides (SiAlONs) have been developed as an important family of phosphor host materials due to their great potentials for white LED applications. Generally, SiAlON-based nitride phosphors are synthesized by the reaction sintering of Si3N4, AlN, and other constituent metal oxide or nitride raw powders under pressured N2 atmosphere at ~1600–2000oC, followed by the postsynthesis grinding step to pulverize crude reaction products. This obvious low manufacturability is a major obstacle to their widespread use in LED applications, triggering the intense investigations for developing more sophisticated processing techniques.

In this regard, the present authors have developed the gas-reduction–nitridation (GRN) method, which enables direct synthesis of fine SiAlON powders from the multicomponent oxide system by using an NH3–CH4 gas mixture as a reduction–nitridation agent. The Ca-α-SiAlON powder produced by the GRN is characterized by high phase purity, nonaggregated fine particle morphology, and very low impurity absorption throughout emissive regions, all of which meet the demands for phosphor applications.

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This article is licensed under a Creative Commons [Attribution 2.1 Japan] license.
http://www.kona.or.jp/jp/grants/lists/41_houkoku_kenkyu.pdf
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