Transparent Y-α SiAlON:Ce3+ Ceramics Fabricated by Low-Temperature Liquid Phase Sintering Technique

Author:

Takahashi Takuma,Sano Yuki,Tatami JunichiORCID,Iijima Motoyuki,Yokouchi Masahiro

Abstract

As the output of solid-state lighting and light sources increases, the demand for transparent phosphor inorganic plates with excellent heat resistance is increasing. It is known that α-SiAlON, which has excellent heat resistance as engineering ceramics, shows photoluminescence by stabilized ions, but it is not possible to obtain α-SiAlON bulk single crystals. In this study, we fabricated transparent Y-α SiAlON:Ce3+ ceramics for use as wave conversion materials for high-power solid-state semiconductor light sources. For this purpose, gas pressure sintering, followed by hot isostatic pressing at lower temperatures, were carried out using homogeneous and dense green bodies. In particular, cyclic cold isostatic pressing increased the density and homogeneity of the green body, which promoted the densification at lower temperatures and the efficient disappearance of pores during sintering. As a result of the suppression of grain growth by low-temperature densification, Y-α SiAlON:Ce3+ ceramics with high in-line transmittance were successfully obtained. The transparent Y-α SiAlON:Ce3+ ceramics exhibited photoluminescence due to the 5d-4f transition of Ce3+. The peak wavelength of the emission intensity depended on the concentration of Ce3+, and the luminescence color was in the range of blue to blue-green.

Funder

Japan Society for the Promotion of Science

Publisher

The Electrochemical Society

Subject

Electronic, Optical and Magnetic Materials

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. 精緻な粉体プロセスに基づくサイアロンの透明化;Hosokawa Powder Technology Foundation ANNUAL REPORT;2023-05-25

2. Effect of rare-earth oxide additives on transparency and fluorescence of α-SiAlON ceramics;Ceramics International;2022-08

3. Transparency and Photoluminescence of Gas-Pressure Sintered Lu-α-SiAlON:Ce3+ Ceramics;ECS Journal of Solid State Science and Technology;2022-07-01

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