用CeYAG陶瓷材料制备高功率白光LED及其光学性能研究毕业论文外文翻译
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1、PDF外文:http:/ 中文 1664 字 英文原文 Preparation and Optical Properties of Transparent Ce:YAG Ceramics for High Power White LED S. Nishiura1, S. Tanabe 1, K. Fujioka2, Y. Fujimoto2 and M. Nakatsuka2 1 Graduate School of Human and Environmental Studies, Kyoto University,Yoshida nihonmatsu-ch
2、o, Sakyo-ku, Kyoto 606-8501, Japan 2 Institute of Laser Engineering, Osaka University, 2-6 Yamada-oka,Suita, Osaka 565-0871, Japan E-mail: s.nishiuranctdd.mbox.media.kyoto-u.ac.jp Abstract. Transparent Ce:YAG ceramics were synthesized from the Ce:YAG powder which was produced by co-preparation
3、 method of the hydroxides. The Ce:YAG ceramics exhibit a broad emission band peaked at 530 nm due to the 5d4f transition of Ce3+. The transmittances of the samples obtained were 70 87 % at 800 nm. The absorption coefficient and emission intensity of Ce3+ were increased with the increase of the thick
4、ness. With increasing thickness of the sample, the color coordinates of the Ce:YAG ceramics under 465 nm LED excitation shifted from the blue region to the yellow region with passing nearby the theoretical white point. The highest value of luminous efficacy of the white LED was 73.5 lm/W. 1. Introdu
5、ction White LEDs are now extensively spotlighted as general illumination as well as backlight of the liquid crystal display (LCD), car headlights and indicator light. The advantages of the LEDs are low electric consumption, high brightness and long lifetime 1. The most common method to
6、make the white LEDs is combining of a blue LED and Ce:Y3Al5O12 (Yttrium Aluminum Garnet) (Ce:YAG) phosphor packed with organic resins 2. The function of the Ce:YAG phosphor is to absorb the blue light emitted from the blue LED and converts it to yellow light. The phosphor has a broad band emission d
7、ue to the 5d4f transition of Ce3+. The combination of two lights of the transmitted blue light and the fluorescent yellow light makes white light. However, this white LED has a disadvantage of thermal degradation of organic resins, which is caused by heat generation of LED chip. As a result, it catc
8、hes up with the degradation of luminous intensity and the change of emission color. In order to solve this problem, a new type white LED using a glass ceramic phosphor has been studied 3-5. The merits of this inorganic material are excellent heat-resistance compared with polymers,For t
9、he merits mentioned above, this approach using inorganic materials is useful for the white LED. To further enhance the performance of the white LEDs, it is important to develop new inorganic materials that have superior optical property than that of glass ceramic phosphor.  
10、; We have interest in transparent polycrystalline ceramics that have been studied as laser
11、 and scintillator materials 6. They have attracted a great attention because the optical property and the efficiency are comparable or superior to those of single crystals. They have advantages of high homogeneity, optical transparency and thermal conductivity. The transparent polycryst
12、alline ceramics have been fabricated by solid state reaction using the powder of the same chemical composition. To achieve transparent polycrystalline ceramics of high quality, a fine powder with no or little agglomeration is necessary. Typically, wet chemical methods have been used for powder synth
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