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Composition design of low-melting point glass phosphors for red-light-emitting diode supported for colorblind people

Research Project

Project/Area Number 18K04759
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeMulti-year Fund
Section一般
Review Section Basic Section 26040:Structural materials and functional materials-related
Research InstitutionSuzuka National College of Technology

Principal Investigator

Wada Noriyuki  鈴鹿工業高等専門学校, その他部局等, 教授 (30342504)

Project Period (FY) 2018-04-01 – 2021-03-31
Project Status Completed (Fiscal Year 2020)
Budget Amount *help
¥4,420,000 (Direct Cost: ¥3,400,000、Indirect Cost: ¥1,020,000)
Fiscal Year 2020: ¥260,000 (Direct Cost: ¥200,000、Indirect Cost: ¥60,000)
Fiscal Year 2019: ¥260,000 (Direct Cost: ¥200,000、Indirect Cost: ¥60,000)
Fiscal Year 2018: ¥3,900,000 (Direct Cost: ¥3,000,000、Indirect Cost: ¥900,000)
Keywords発光ダイオード / 蛍光体 / 低融点 / ガラス / マンガン / 銅 / 銀 / アンチモン / リン酸塩ガラス / マンガンイオン(II) / 赤色蛍光 / 赤色蛍光体 / 低融点ガラス
Outline of Final Research Achievements

To realize red phosphor converted light emitting diode (red PCLED) having high brightness and broad emission suited for a color-blind parson, preparation of Mn2+-doped phosphate glasses co-doping with Cu+, Ag+, and Sb3+ ions having UV-excitable by a melt-quenching method was tried, and and their fluorescence spectral and softening properties were investigated. As a result, the concentration of Cu+, Ag+ ions, and Agn+ clusters (n = 2, 3) were controlled by melting temperature and time, their ions and clusters enabled to excite under UV light. In addition, Sb3+-co-doping enabled to be low melting temperature. From the above, it was successful to obtain Mn2+-doped phosphate glass with strong, broad, red fluorescence suited for red PCLED.

Academic Significance and Societal Importance of the Research Achievements

色弱者の多くは,約620 nm以上の可視光線(赤色光)を視覚できないため,高輝度赤色の発光ダイオード(LED)(発光波長625 nm)を用いた赤信号や電光掲示板など公共の表示装置が視覚できない問題がある.本研究では,紫外励起下において高輝度でブロードな赤色蛍光を発現する低融点ガラスを作製することに成功した.このガラスを用いて励起光源の紫外LEDチップを被覆することで,健常者には赤色に,色弱者には橙色に見える高輝度かつブロードな赤色発光を有する赤色PCLEDが実現でき,上述の問題が解決される成果をえている.

Report

(4 results)
  • 2020 Annual Research Report   Final Research Report ( PDF )
  • 2019 Research-status Report
  • 2018 Research-status Report
  • Research Products

    (7 results)

All 2020 2019 Other

All Journal Article (2 results) (of which Peer Reviewed: 2 results) Presentation (4 results) Remarks (1 results)

  • [Journal Article] マンガンイオン(II)含有リン酸塩ガラスの赤色蛍光-高輝度化と紫外 LED 励起を目指して-2020

    • Author(s)
      和田憲幸, 小島一男, 井上幸司
    • Journal Title

      セラミックス(Ceramics Japan, Bulletin of The Ceramic Society of Japan)

      Volume: 55 Pages: 825-828

    • Related Report
      2020 Annual Research Report
    • Peer Reviewed
  • [Journal Article] Preparation of Mn2+-Cu+ co-doped P2O5-ZnO-Al2O3 glasses and their red fluorescence properties2019

    • Author(s)
      Wada Noriyuki、Hanai Jyoji、Furukawa Mikiya、Kojima Kazuo
    • Journal Title

      Journal of the American Ceramic Society

      Volume: 印刷中 Issue: 8 Pages: 4621-4631

    • DOI

      10.1111/jace.16302

    • Related Report
      2019 Research-status Report 2018 Research-status Report
    • Peer Reviewed
  • [Presentation] 様々な溶融条件で作製したMn-Ag共含有リン酸塩ガラスの赤色蛍光特性2020

    • Author(s)
      平田凌雅, 和田憲幸, 小島一男
    • Organizer
      2020年年会, 日本セラミックス協会
    • Related Report
      2020 Annual Research Report
  • [Presentation] Mn2+含有リン酸塩ガラスの赤色蛍光とガラス転移点におけるM2O3(M: In,Sb,Bi)の添加効果2020

    • Author(s)
      山下陽宇, 橋本渉, 和田憲幸
    • Organizer
      国立高専第3ブロック専攻科研究フォーラム
    • Related Report
      2020 Annual Research Report
  • [Presentation] 様々な溶融条件で作製したMn-Ag共含有リン酸塩ガラスの赤色蛍光特性2020

    • Author(s)
      平田凌雅, 和田憲幸, 小島一男
    • Organizer
      日本セラミックス協会
    • Related Report
      2019 Research-status Report
  • [Presentation] Mn2+含有リン酸塩ガラスの赤色蛍光とガラス転移点2019

    • Author(s)
      山下陽宇, 和田憲幸, 小島一男
    • Organizer
      日本セラミックス協会 2019年 年会
    • Related Report
      2018 Research-status Report
  • [Remarks] 2020年11月1日(日)和田教授が執筆した解説記事が 日本セラミックス協会誌に掲載

    • URL

      https://www.suzuka-ct.ac.jp/mse/mse-web/?p=2720

    • Related Report
      2020 Annual Research Report

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Published: 2018-04-23   Modified: 2022-01-27  

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