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呂宗昕 教授 / Chung-Hsin Lu Professor

呂宗昕 教授
Chung-Hsin Lu
電  話. (02)2365-1428
傳  真. (02)2362-3040
電子郵件. chlu@ntu.edu.tw
辦公室 . 化工一館112A
研究室資料
光電材料與半導體元件研究室
位 置. 化工一館106; 128;
植研102
電 話. (02)3366-3017;
(02)3366-3017;
(02)3366-3070
Index
    • 學經歷
      • 國立台灣大學     化學工程學士,1983
      • 日本國立東京工業大學 無機材料工學碩士,1988
      • 日本國立東京工業大學 無機材料工學博士,1991
      • 美國加州大學柏克萊分校及勞倫斯國家實驗室 博士後研究員,1992

     

    • 研究主題

      本研究室針對能源材料、光電材料、奈米材料、半導體元件進行研發,培養十數位博士及數十位碩士,畢業研究生大多於高科技產業就業,其中數十位進入台積電公司服務及研發。

      • LED發光材料及夜光材料
        配合白光發光二級體產業之發展,開發於白光下激發產生不同波長之新型螢光材料,探討材料結晶結構、發光光譜與顯微結構,及解析其發光機制,並研發平面顯示器所需之特殊螢光材料。
      • 新型鋰離子電池儲能材料
        研發能源產業所需之鋰離子二次電池材料,開發新型製備程序製備鋰離子電池之正極與負極材料,分析其材料及充放電特性,開發符合產業應用之鋰離子材料。
      • 太陽電池能源材料及半導體光電元件
        配合替代能源產業蓬勃發展,開發於不同基版上成長銅銦鎵硒(CIGS)材料薄膜之技術,製備新世代薄膜型太陽電池,另外配合光電工業發展,開發下一世代之新型半導體薄膜元件。
      • 智慧手持裝置能源技術
        配合物聯網產業之發展,開發鈣鈦礦材料薄膜之製備技術,製備室內可發電之鈣鈦礦薄膜太陽能電池,並結合手持裝置,開發新世代智慧型充電技術。
      • 新型奈米光電材料及3D列印技術
        研發半導體產業及能源產業所需之奈米材料,探討奈米電子材料之新型製備程序,分析其電子與光電特性,應用於電子陶瓷及半導體領域中。
      Index
     
    • 最新研究
      • 白光發光二極體螢光體材料製備與分析
      • 夜光節能材料之開發
      • 鋰離子二次電池之正負極材料之製備與分析
      • 銅銦鎵硒(CIGS)薄膜太陽能電池光吸收層與緩衝層之製備與分析
      • 鈣鈦礦薄膜太陽能電池光吸收層之製備與分析
      • 奈米材料製備與光電薄膜元件開發
    1. 科技部特約研究員
    2. 第九屆奈米產業科技菁英獎
    3. 台灣化學工程學會金開英獎
    4. 國科會傑出研究獎第三次
    5. 台灣大學終身特聘教授
    6. 國科會傑出研究學者
    7. 台灣化學工程學會化工技術獎
    8. 中國工程師學會十大傑出工程教授
    9. 國科會傑出研究獎第二次
    10. 第三十九屆十大傑出青年獎
    11. 台灣化學工程學會賴再得教授獎
    12. 國科會傑出研究獎第一次
    13. 指導學生林詣軒獲得中技社碩士班「科技獎學金」
    14. 指導學生陳富珊獲得中技社博士班「科技獎學金」
    15. 指導學生吳忠憲獲得達興材料博士班獎學金
    16. 指導學生林樂獲得國科會碩士論文獎
    17. 指導學生林裕凱獲得中工會台大分會化工組第三名
    18. 指導學生李嘉穎獲得國科會研究創作獎
    19. 指導學生孫裕昌獲得陶業研究學會論文研究所組第三名
    20. 指導學生陳逸舟獲得科林論文獎博士班第一名
    1. Jen-Cheng Sung, and Chung-Hsin Lu, “Effects of Sputtering Conditions on the Photovoltaic Properties of Al-doped Zinc Oxide Films for Cu(In,Ga)Se2 Thin-film Solar Cells”, Journal of Materials Science-Materials in Electronics, 28, 15442 (2017).
    2. Heng-Yu Liu, Sudipta Som, Jen-Cheng Sung, Chang-Ying Ou, Che-Yuan Yang, and Chung-Hsin Lu, “Effects of Ammonia Concentration on the Formation of CdS Fabricated via Microwave-assisted Chemical Bath Deposition,” Journal of the American Ceramic Society, 100, 5120 (2017).
    3. Jen-Cheng Sung, and Chung-Hsin Lu, “Potassium-ion Doped Cu(In,Ga)Se2 Thin Films Solar Cells: Phase formation, Microstructures, and Photovoltaic Characteristics,” Applied Surface Science 409, 270 (2017).
    4. Guan-Lin Chiu, T. Subburaj, Sudipta Som, Chang- Ying Ou, and Chung-Hsin Lu, “Influence of Doping Iron Ions into Cu(In,Ga)Se2 Films in the Morphology and Photovoltaic Properties of Thin-film Solar Cells”, Journal of Ceramics Processing Research, 18, 754 (2017).
    5. Chung-Hsin Lu, Che-Yuan Yang, Sudipta Som, Subrata Das, “Facile Synthesis and Spectroscopic Characterization of Siliconitride Phosphors for White Light-Emitting Diodes,” Journal of the American Ceramic Society, 101, 4916 (2018).
    6. Anil Kumar Pal, Sudipta Som, Chung-Hsin Lu, “Synthesis and Spectroscopic Analysis of Sm3+ Doped CeO2 Ceramic Powders for The Application of White LEDs,” Ceramics International, 44, 18256 (2018).
    7. Chung-Hsin Lu, Guan-Lin Chiu, Sudipta Som, Chang-Ying Ou, “Influence of Selenization Temperatures on the Microstructures and Photoelectric Properties of Iron-ion Doped Cu(In,Ga)Se2 Thin-Film Solar Cells,” Vacuum, 156, 212 (2018).
    8. Yong-Jian Liu, Chang-Ying Ou, Chung-Hsin Lu, “Effects of Mo Films Prepared via Different Sputtering Conditions on the Formation of MoSe2 During Selenization,” Journal of Alloys and Compounds, 747, 621 (2018).
    9. Chung-Hsien Wu, Fu-Shan Chen, Shin-Hom Lin, Chang-Ying Ou, Chung-Hsin Lu, “Effects of Various Grading Types of Gallium-ion Contents on The Properties of Cu(In,Ga)Se2 Films Prepared via the Spin Coating Method,” Materials Research Express, 5, 025516 (2018).
    10. Hua-Tai Lu, Chang-Ying Ou, Chung-Hsin Lu, “(Ag,Cu)(In,Ga)Se2 Thin Films Fabricated on Flexible Substrates via Non-Vacuum Process,” Journal of Materials Science: Materials in Electronics, 29, 1614 (2018).
    11. Ming-Ching Chen, Jen-Cheng Sung, Chang-Ying Ou, Suditpa Som, Chung-Hsin Lu, “Fast Formation of CdS Thin Films Prepared via The Microwave-Assisted Chemical Bath Deposition Process,” Thin Solid Films, 645, 64 (2018).
    12. Subrata Das, Sudipta Som, Che-Yuan Yang, Chung-Hsin Lu, “Optical Temperature Sensing Properties of SnO2 : Eu3+ Microspheres Prepared via The Microwave Assisted Solvothermal Process,” Materials Research Bulletin, 97, 101 (2018).
    13. Chung-Hsin Lu, Wen Yuan Li, T. Subburaj, Chang Ying Ou, P. Senthil Kumar, “Influence of Bio-derived Agar Addition on the Electrochemical Performance of LiFePO4 Cathode Powders for Li-ion batteries,” Ceramics International, 45, 12218 (2019).
    14. Chung-Hsin Lu, Shin-Hom Lin, “Microstructures and Photovoltaic Performances of Bismuth‐ion Doped Cu(In,Ga)Se2 Films Prepared via Sputtering Process,” Journal of the American Ceramic Society, 102, 3578 (2019).
    15. Sudipta Som, Peng-Hsuan Kuo, Chung-Hsin Lu, “Facile Synthesis of Eu2+ Activated Dual Light Emitting Barium Silicate Phosphors for Warm-White Light Emitting Diodes,” Journal of Alloys and Compounds, 790, 1060 (2019).
    16. Sudipta Som, Che-Yuan Yang, Chung-Hsin Lu, Subrata Das, “Synthesis of Li+-ion Activated NaYF4: Er3+/Yb3+ Phosphors via A Modified Solid-state Process for Latent Fingerprint Detection,” Ceramics International 45, 5703 (2019).
    17. Chung-Hsin Lu, N. Naresh, Senthil Kumar, Sudipta Som, “Microwave- Assisted Solvothermal Synthesis and Electrochemical Characterizations of Ternary Perovskite NiTiO3 Anode Materials for Lithium-ion Batteries,” Ceramics International 45, 19517 (2019).
    18. Madhav P. Chavhan, Sudipta Som, Chung-Hsin Lu, “Size-controlled Ceria Nanocubes Obtained via Hydrothermal Route for Electrochemical Capacitors,” Materials Letters 257, 126598 (2019).
    19. Chung-Hsin Lu, Guan-Rong Chen, Mei-Tsan Kuo, “Effects of Precursor Composition on Morphology and Microstructure of Hybrid Organic-Inorganic Perovskite Solar Cells,” Journal of Materials Science 54,12758 (2019).
    20. Madhav P. Chavhan, Sudipta Som, Chung-Hsin Lu, “Size-controlled Ceria Nanocubes Obtained via Hydrothermal Route for Electrochemical Capacitors,” Materials Letters 257, 126598 (2019).