The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass

碩士 === 國立中山大學 === 光電工程學系研究所 === 100 === Using low-temperature (650℃) Ce3+:YAG doped glass (LTCeYDG) phosphor layer instead of conventional Ce:YAG doped silicone phosphor layer applied to high-power phosphor-converted white-light-emitting diodes (PC-WLEDs) is demonstrated.The glass transition tempera...

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Main Authors: Ji-Hung Chen, 陳繼弘
Other Authors: Wood-Hi Cheng
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/95609610364507606283
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spelling ndltd-TW-100NSYS51240992015-10-13T21:22:19Z http://ndltd.ncl.edu.tw/handle/95609610364507606283 The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass 低溫玻璃螢光體製程及均勻度分析 Ji-Hung Chen 陳繼弘 碩士 國立中山大學 光電工程學系研究所 100 Using low-temperature (650℃) Ce3+:YAG doped glass (LTCeYDG) phosphor layer instead of conventional Ce:YAG doped silicone phosphor layer applied to high-power phosphor-converted white-light-emitting diodes (PC-WLEDs) is demonstrated.The glass transition temperature (Tg) of silicone is 150℃ but glass is 750℃,it shows the glass were employed in high power LED than silicon. The uniformity of phosphor powder doped glass is an important item to discriminates between good and bad. Quantize the uniformity of glass phosphor by image processing software and Distribution Uniformity (Du). Calculate the uniformity of phosphor powder mix with glass powder which has different particle size and measurement optical properties of glass phosphor which has different uniformity. The Du of glass phosphor are 64.46%, 84.65%, 85.24% , 91.85% and the quantum efficiency are 18.49%, 28.31%, 29.73%, 28.56% ,respectively. By using Ceramic tube and low temperature glass powder sintering glass phosphor is a new fabrication. Compare with last fabrication, new fabrication reduce 100℃fabrication temperature from 750℃ to 650℃, 70% material savings and high luminous efficiency. The quantum efficiency and lumen per watt were improved about 7 percentage point from 22.3% to 29.1% and 4.2 lm/W from 36.4 lm/W to 40.68 lm/W. We used the XRD to analyze the glass phosphor of last fabrication and new fabrication and the results show that the higher thermal stress destroys the structure of YAG, lower fabrication temperature used to get higher luminous efficiency. Wood-Hi Cheng 鄭木海 2012 學位論文 ; thesis 84 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 國立中山大學 === 光電工程學系研究所 === 100 === Using low-temperature (650℃) Ce3+:YAG doped glass (LTCeYDG) phosphor layer instead of conventional Ce:YAG doped silicone phosphor layer applied to high-power phosphor-converted white-light-emitting diodes (PC-WLEDs) is demonstrated.The glass transition temperature (Tg) of silicone is 150℃ but glass is 750℃,it shows the glass were employed in high power LED than silicon. The uniformity of phosphor powder doped glass is an important item to discriminates between good and bad. Quantize the uniformity of glass phosphor by image processing software and Distribution Uniformity (Du). Calculate the uniformity of phosphor powder mix with glass powder which has different particle size and measurement optical properties of glass phosphor which has different uniformity. The Du of glass phosphor are 64.46%, 84.65%, 85.24% , 91.85% and the quantum efficiency are 18.49%, 28.31%, 29.73%, 28.56% ,respectively. By using Ceramic tube and low temperature glass powder sintering glass phosphor is a new fabrication. Compare with last fabrication, new fabrication reduce 100℃fabrication temperature from 750℃ to 650℃, 70% material savings and high luminous efficiency. The quantum efficiency and lumen per watt were improved about 7 percentage point from 22.3% to 29.1% and 4.2 lm/W from 36.4 lm/W to 40.68 lm/W. We used the XRD to analyze the glass phosphor of last fabrication and new fabrication and the results show that the higher thermal stress destroys the structure of YAG, lower fabrication temperature used to get higher luminous efficiency.
author2 Wood-Hi Cheng
author_facet Wood-Hi Cheng
Ji-Hung Chen
陳繼弘
author Ji-Hung Chen
陳繼弘
spellingShingle Ji-Hung Chen
陳繼弘
The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
author_sort Ji-Hung Chen
title The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
title_short The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
title_full The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
title_fullStr The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
title_full_unstemmed The Fabrication and Uniformity Analysis of Low Temperature Ce3+:YAG Doped Glass
title_sort fabrication and uniformity analysis of low temperature ce3+:yag doped glass
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/95609610364507606283
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