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系所成員

林敬堯特聘教授

CYL_S
學歷:美國普林斯頓大學博士
專長:無機化學、太陽能電池染料
分 機 :4152
辦公室:科技二館 313室
實驗室分機:4894
信箱:cyl@ncnu.edu.tw
Google Scholar:
https://scholar.google.com/citations?hl=en&user=H11CFjwAAAAJ
  • 學士 輔仁大學 化學系
    碩士 國立台灣大學 化學系
    博士 美國普林斯頓大學 化學系
    博士後研究員 (美國賓州大學化學系)
    國立暨南國際大學 應用化學系 助理教授
    國立暨南國際大學 應用化學系 副教授
    國立暨南國際大學 應用化學系 教授
  • 1. 染料敏化太陽能電池、高分子太陽能電池及高分子記憶體之光敏劑研究
        替代能源是當下最熱門的研究題材。本實驗室從事這類研究多年,頗有收穫。
        參與合成的學生,利用真空系統、手套箱、紫外線可見光光譜儀、紅外線光譜儀、螢光光譜儀、核磁共振光譜儀等儀器。
        參與太陽能電池的學生, 能學習使用網印機、旋轉塗佈機、熱壓機、玻璃切割器、手套箱等來製備太陽能電池 (陽極、陰極、電解液),也能學習使用太陽光模擬器、電流電壓量測儀、光譜響應量測系統、電化學交流阻抗分析儀等來量測太陽能電池的特性。以上所提及的儀器,皆是業界常用的設備。
    2. 紫質相關化合物之基礎研究
    對以上研究題材有興趣的同學,歡迎參加我們的行列。

     缺電子金屬紫質之製備、電化學及光譜性質研究 (莊立杰,碩士,93年7月)。
     設計、合成紫質光敏劑:為研究光敏劑與二氧化鈦奈米結構介面間之電子轉移 (羅振夫,碩士,94年7月)。
     鐵、鋅金屬紫質之合成、電化學、電聚合反應及其運用 (洪于鈞,碩士,94年7月)。
     鎳、無金屬紫質之合成、電化學、電聚合反應及其運用 劉智明,碩士,94年7月)。
     無金屬苯胺乙炔紫質對亞硝酸離子之光譜分析 (張勝雄,碩士,95年7月)。
     無金屬苯胺乙炔紫質之製備及其修飾電極偵測汞離子之研究 (蕭壬翔,碩士,95年7月)。
     新穎無金屬寡電子紫質之製備、電化學及光譜性質研究 (姚啟文,碩士,95年7月)。
     寡電子錳紫質之製備、電化學及光譜性質研究 (陳彥全,碩士,96年7月)。
     金屬乙炔苯酸紫質之合成、電化學及光譜性質研究 (謝旻旭,碩士,96年7月)。
     鐵乙炔苯胺紫質之電化學、電聚合反應及其應用 (林志軒,碩士,96年7月)。
     多環芳香族紫質太陽能電池光敏劑之合成及性質研究 (王進立,碩士,97年7月)。
     稠環烴紫質太陽能電池光敏劑之合成及其性質研究 (江堃睿,碩士,97年7月。
     甲基吡啶乙炔紫質之電化學,電聚合及其反應機構 (黃淞洲,碩士,97年7月)。
     以稠環烴炔基擴張紫質吸收峰及其在敏化太陽能電池上之效應 (王俞千,碩士,98年7月)。
     紫質供受體衍生物之合成及其基本性質研究 (程怡惠,碩士,98年7月)。
     雜環及多環類紫質之合成及性質研究 (吳承樺,碩士,98年7月)。
     寡電子鐵紫質之製備、電化學及光譜性質研究 (鄭宇翔,碩士,98年7月)。
     寡電子鐵紫質之製備及催化反應的研究 (謝承憲,碩士,98年7月)。
     四並苯類乙炔取代基修飾鋅紫質之合成及性質研究 (曾游鈴,碩士,99年7月)。
     蔥類乙炔取代基修飾鋅紫質之合成及性質研究 (丁柏仁,碩士,99年7月)。
     為染料敏化太陽能電池設計並製備具有不同取代基的鋅紫質與其性質研究 (羅振夫,博士,100年2月)。
     寡電子錳紫質環氧化催化反應的研究 (王若瑋,碩士,100年7月)。
     芘類或苯胺類衍生物連結蔥類取代基修飾鋅紫質之合成及性質研究 (蘇品璋,碩士,100年7月)。
     利用電化學方法研究苯甲酸與鋅紫質衍生物於四氫呋喃之還原反應 (呂秀玉,碩士,101年2月)。
     不同光敏劑運用於染料敏化太陽能電池之研究 (王薏雰,碩士,101年6月)。
     俱芳香族取代基鋅紫質等之電化學與電聚合反應 (郭馨徽,碩士,101年6月)。
     苝雙亞醯胺衍生物之電化學及電聚合反應研究 (林洧竹,碩士,101年6月)。
     合成有機染料以應用於染敏太陽能電池暨鋅紫質以應用於高分子太陽能電池 (蔡明機,碩士,102年6月)。
     無金屬紫質與有機分子光敏劑之合成與性質研究 (蕭晏妮,碩士,102年6月)。
     稠環烴有機分子光敏劑之合成與性質研究 (陳誌倫,碩士,102年6月)。
     開發高效能光敏劑應用於染料敏化太陽能電池 (王進立,博士,102年6月)。
     紫質雙體應用於染料敏化太陽能電池 (張晏禎,碩士,103年6月)。
     新穎性紫質應用於染料敏化太陽能電池 (吳承樺,博士,103年7月)
     合成含有二苯胺或二烷胺之新穎性光敏劑與其性質研究 (蕭郁欣,碩士,104年7月)
     合成新穎性紫質光敏劑與其研究性質 (曾傳凱,碩士,104年7月)
     不同新穎紫質及有機光敏劑之電化學研究 (呂昆杰,碩士,104年7月)
     應用於染料敏化太陽能電池之有機分子染料與紫質染料的光伏性質研究 (林保岑,碩士,104年7月)
     新穎性光敏劑之合成、性質及太陽能電池應用 (黃忠楷,碩士,105年6月)
     新穎性光敏劑之合成、性質、太陽能電池及聚合物應用 (游蕙綺,碩士,105年6月)
     有機分子與紫質或釕金屬染料共敏化之光伏性質研究 (張瓊文,碩士,105年6月)
     應用於染料敏化太陽能電池之新穎光敏化劑 (林柏志,碩士,105年6月)
     新穎光敏劑之電化學、電聚合與其應用於染料敏化太陽能電池陰極之研究 (劉佳霖,碩士,105年6月)
     新穎菌綠素光敏劑之合成及光譜研究 (余俊達,碩士,106年6月)
     新穎性菌綠素光敏劑的合成、性質及應用之研究 (曹哲愷,碩士,106年6月)
     紫質和菌綠素應用於染料敏化太陽能電池之研究 (林士堯,碩士,106年6月)
     新穎多酸根或濃縮推電子基之菌綠素合成及性質探討 (陳炫呈,碩士,107年6月)
     新穎菌綠素光敏劑之電化學與其光伏性質 (蘇塘庭,碩士,108年1月)
     應用於染料敏化太陽能電池之新穎菌綠素光敏劑 (蘇新德,碩士,108年1月)
     發展噻吩橋基之紫質染料敏化太陽能電池 (邱俊凱,碩士,108年8月)
     1. 為染敏電池發展含蒽有機染料,2. 為高分子太陽能電池發展鋅紫質染料 (蔡明機,博士,108年12月)
     新穎具叔丁基拉推細菌葉綠素之合成及性質 (楊博丞,碩士,109年7月)
     具叔丁基推拉細菌葉綠素之合成及性質 (洪劭暐,碩士,109年7月)
     含芴有機染料之光伏性質研究 (黃建富,碩士,109年7月)
     為染敏太陽能電池研究含雙取代芘異構物紫質之光伏性質 (簡琨翰,碩士,109年7月)
     有或無輔助受體之叔丁基細菌葉綠素光敏劑合成與性質探討 (張宏銘,碩士,109年7月)
  • Google Scholar:
    https://scholar.google.com/citations?hl=en&user=H11CFjwAAAAJ

    Selected Publications :
    1. C.-L. Wang, M.-C. Tsai, K.-H. Jian, C.-L. Li, H.-M. Chang, C.-Y. Lin,* Isomeric
    Pyrene−Porphyrins for Efficient Dye-Sensitized Solar Cells: An Unexpected
    Enhancement of the Photovoltaic Performance upon Structural Modification, ACS
    Appl. Mater. Interfaces 2021, 13, 7152−7160. (SCI)
    2. M.-C. Tsai, Y.-C. Chiu, M.g-D. Lu, Y.-L. Tung, H.-C. Tsai, J.-R. Chang Chien,
    C.-Y. Lin,* Efficient Anthryl Dye Enhanced by an Additional Ethynyl Bridge for
    Dye-Sensitized Module with Large Active Area to Drive Indoor Appliances, ACS
    Appl. Energy Mater. 2020, 3, 2744−2754. (SCI)
    3. Y.-L. Su , H.-C. You, S.-H. Cheng,* C.-Y. Lin,* Fabrication of bacteriochlorin
    shell/gold core nanoparticles for the sensitive determination of trichlosan using
    differential pulse voltammetry, Analytica Chimica Acta, 2020, 1123, 44-55. (SCI)
    4. S. Chakraborty, M.-C. Tsai, X.-D. Su, X.-C. Chen, T.-T. Su, C.-K. Tsao, C.-Y.
    Lin,* Synthesis, properties and photovoltaic performance in dye-sensitized solar
    cells of three meso-diphenylbacteriochlorins bearing a dual-function electron-
    donor, RSC Adv., 2020, 10, 6172-6178. (SCI)
    5. C.‐Y. Chen, T.‐Y. Kuo, C.‐W. Huang, Z.‐H. Jian, P.‐T. Hsiao, C.‐L. Wang, J.‐C.
    Lin, C.‐Y. Chen,.C.‐H. Chen, Y.‐L. Tung, M.‐C. Tsai, K.‐M. Huang, C.‐M. Chen,
    C.‐W. Hsu, Y.‐C. Chen, Z. Pei, Y. S. Tingare, H.‐H. Chou, C.‐Y. Yeh, C.‐Y. Lin,
    Y.‐L. Lee, H.‐W. Lin, H.‐F. Meng, P.‐T. Chou, C.‐G. Wu, Thermal and angular
    dependence of next‐generation photovoltaics under indoor lighting, Prog.
    Photovolt. Res. Appl. 2020, 28, 111–121. (SCI)
    6. M.-C. Tsai, C.-M. Hung, Z.-Q. Chen, Y.-C. Chiu, H.-C. Chen,* C.-Y. Lin,* (2019,
    Dec). Design of new n-type porphyrin acceptors with subtle side-chain engineering
    for efficient nonfullerene solar cells with low energy loss and optoelectronic
    response covering the near-infrared region. ACS Appl. Mater. Interfaces, 11,
    45991-45998. (SCI).
    7. C.-H. Li, C.-C. Chang, Y.-H. Hsiao, S.-H. Peng, Y.-J. Su, S.-W. Heo, K. Tajima,
    M.-C. Tsai, C.-Y. Lin,* C.-S. Hsu,* (2019, Jan). Porphyrin-containing polymer as
    a superior blue light-absorbing additive to afford high-Jsc ternary solar cells. ACS
    Appl. Mater. Interfaces, 11, 1156-1162. (SCI).
    8. Ming-Chi Tsai, Chin-Li Wang, Chiung-Wen Chang, Cheng-Wei Hsu, Yu-Hsin
    Hsiao, Chia-Lin Liu, Chen-Chi Wang, Shr-Yau Lina and Ching-Yao Lin* (2018,
    Feb). A large, ultra-black, efficient and cost-effective dye-sensitized solar module
    approaching 12% overall efficiency under 1000 lux indoor light. Journal of
    Materials Chemistry A, 6, 1995–2003. (SCI)
    9. S. Chakraborty, H.-C. You, C.-K. Huang, B.-Z. Lin, C.-L. Wang, M.-C. Tsai, C.-
    L. Liu, C.-Y. Lin* (2017, Mar). meso-Diphenylbacteriochlorins: Macrocyclic Dyes
    with Rare Colors for Dye-Sensitized Solar Cells. Journal of Physical Chemistry C ,
    121, 7081 - 7087. (SCI)
    10. C.-L. Tsai, K. S. K Reddy, C.-Y. Yeh,* C.-L. Wang C.-Y. Lin,*. H.-J. Yen, M.-C.
    Tsai, G.-S. Liou* (2016, Aug). Zinc and linkage effects of novel
    porphyrincontaining polyimides on resistor memory behaviors. RSC Advances, 6,
    88531–88537. (SCI)
    11. C.-L. Wang, M. Zhang, Yu-H. Hsiao, C.-K. Tseng, C.-L. Liu, M. Xu, P. Wang,*
    C.-Y. Lin,* "Porphyrins bearing a consolidated anthryl donor with dual functions
    for efficient dye-sensitized solar cells" Energy Environ. Sci., 2016, 9, 200-206.
    (SCI)

    12. M.-C. Tsai, C.-L. Wang, C.-Y. Lin,* C.-L. Tsai, H.-J. Yen, H.-C. You, G.-S.
    Liou,* "A novel porphyrin-containing polyimide for memory devices" Polym.
    Chem., 2016, 7, 2780–2784.
    13. C.-L. Tsai, K. S. K Reddy, C.-Y. Yeh,* C.-L. Wang C.-Y. Lin,*. H.-J. Yen, M.-C.
    Tsai, G.-S. Liou* "Zinc and linkage effects of novel porphyrincontaining
    polyimides on resistor memory behaviors" RSC Adv., 2016, 6, 88531–88537
    (SCI)
    14. C.-L. Wang, P.-T. Lin, Y.-F. Wang, C.-W. Chang, B.-Z. Lin, H.-H. Kuo, C.-W.
    Hsu, S.-H. Tu, C.-Y. Lin,* " Cost-effective Anthryl Dyes for Dye-sensitized Cells
    under One Sun and Dim Light " J. Phys. Chem. C 2015, 119, 24282−24289. (SCI)
    15. S.-C. Huang, C.-Y. Lin,* "Reductive Electropolymerization of N-methyl-3-
    pyridylethynyl-porphyrins" Chem. Commun., 2015, 51, 519-521. (SCI)
    16. J.-W. Shiu, Y.-C. Chang, C.-Y. Chan, H.-P. Wu, C.-L. Wang, C.-Y. Lin,* E. W.-G.
    Diau,* "Panchromatic Co-sensitization for Porphyrin-sensitized Solar Cells with
    Near Infrared Light Harversting Ability Exceeding 900 nm" J. Mater. Chem. A,
    2015, 3,1417-1420. (SCI)
    17. C.-L. Wang, J.-W. Shiu, Y.-N. Hsiao, P.-S. Chao, E. W.-G. Diau, * C.-Y.
    Lin,* "Co-Sensitization of Zinc and Free-Base Porphyrins with an Organic Dye for
    Efficient Dye-Sensitized Solar Cells" J. Phys. Chem. C, 2014, 118, 27801−27807.
    (SCI)
    18. Y.-H. Chao, J.-F. Jheng, J.-S. Wu, K.-Y. Wu, M.-Ch. Tsai, C.-L. Wang, Y.-N.
    Hsiao, C.-L. Wang,* C.-Y. Lin,* C.-S. Hsu,* "Porphyrin-Incorporated 2D D–A
    Polymers with Over 8.5% Polymer Solar Cell Effi ciency" Adv. Mater., 2014, 26,
    5205-5210. (SCI)
    19. C.-L. Wang, J.-Y. Hu, C.-H. Wu, H.-H. Kuo, Y.-C. Chang, Z.-J. Lan, H.-P. Wu, E.
    W.-G. Diau,* C.-Y. Lin,* "Highly efficient porphyrin-sensitized solar cells with
    enhanced light harvesting ability beyond 800 nm and efficiency exceeding
    10%" Energy Environ. Sci., 2014, 7, 1392–1396. (SCI)
    20. C.-H. Wu, M.-C. Chen, P.-C. Su, H.-H. Kuo, C.-L. Wang, C.-Y. Lu, C.-H. Tsai,
    C.-C. Wu,* C.-Y. Lin,* "Porphyrins for efficient dye-sensitized solar cells covering
    the near-IR region" J. Mater. Chem. A, 2014, 2, 991-999. (SCI)
    21. P.-S. Chao, M.-Y. Kuo, C.-F. Lo, M.-H. Hsieh, Y.-H. Cheng, C.-L. Wang, H.-Y.
    Lu, H.-H. Kuo, Y.-N. Hsiao, C.-M. Wang, C.-Y. Lin,* "Electrochemistry and
    spectroelectro- chemistry of carboxyphenylethynyl porphyrins", J. Porphyrins
    Phthalocyanines, 2013, 17, 92–98. (SCI)
    22. C.-Y. Yeh, C.-Y. Lin, E. W.-G. Diau. "Chapter 15. Push-Pull Porphyrins for
    Efficient Dye-Sensitized Solar Cells" in "Multiporphyrin Arrays: Fundamentals
    and Applications" (ISBN: 9789814316606). Singapore, Singapore. Pan Stanford
    Publishing, Jan, 2012, pp. 701-762.
    23. C.-L. Wang, C.-M. Lan, S.-H. Hong, Y.-F. Wang, T.-Y. Pan, C.-W. Chang, H.-H.
    Kuo, M.-Y. Kuo,* E. W.-G. Diau,* C.-Y. Lin,* "Enveloping Porphyrins for
    Efficient Dye-Sensitized Solar Cells", Energy Environ. Sci., 2012, 5, 6933-6940.
    (SCI)
    24. C.-M. Lan, H.-P. Wu, T.-Y. Pan, C.-W. Chang, C.-T. Chen,* C.-L. Wang, C.-Y.
    Lin,* E. W.-G. Diau,* "Enhanced Photovoltaic Performance with Co-sensitization
    of Porphyrin and an Organic Dye in Dye-sensitized Solar Cells", Energy Environ.
    Sci., 2012, 5, 6460-6464. (SCI)

    25. Y.-C. Wu, Y.-H. Chao, C.-L. Wang, C.-T. Wu, C.-S. Hsu,* Y.-L. Zeng, C.-Y.
    Lin,* "Porphyrin-Diindenothieno[2,3-b]thiophene Alternating Copolymer - A Blue-
    Light Harvester in Ternary-Blend Polymer Solar Cells", J. Polym. Sci., Part A:
    Polym. Chem., 2012, 50, 5032-5040. (SCI)
    26. C.-H. Wu, S.-H. Hong, H.-H. Kuo, Y.-Y. Chu, E. W.-G. Diau,* C.-Y.
    Lin,* "Fluorene-Modified Porphyrin for Efficient Dye-Sensitized Solar
    Cell", Chem. Commun., 2012, 48, 4329-4331. (期刊邀稿,SCI)
    27. D. Bhattacharya, C. H. Chang, Y. H. Cheng, L. L. Lai, H. Y. Lu, C. Y. Lin,* K.
    L.Lu,* "Multielectron Redox Chemistry of Neutral, NIR-Active, Indigo-Pillared
    Re(I)-Based TriangularMetalloprism", Chem. Eur. J., 2012, 18, 5275-5283. (SCI)
    28. M. Shrestha, L. Si, C.-W. Chang, H. He,* A. Sykes, C.-Y. Lin, E. W.-G. Diau,
    "Dual Functionality of BODIPY Chromophore in Porphyrin-Sensitized
    Nanocrystalline Solar Cells", J. Phys. Chem. C, 2012, 116, 10451-10460. (SCI)
    29. Y.-C. Chang, C.-L. Wang, T.-Y. Pan, S.-H. Hong, C.-M. Lan, H.-H. Kuo, C.-F.
    Lo, H.-Y. Hsu, C.-Y. Lin,* E. W.-G. Diau*, "A strategy to design highly efficient
    porphyrin sensitizers for dye-sensitized solar cells", Chem. Commun., 2011, 47,
    8910-8912. (SCI)
    30. C.-L. Wang, Y.-C. Chang, C.-M. Lan, C.-F. Lo, E. W.-G. Diau,* C.-Y.
    Lin,* "Enhanced Light Harvesting with pi-Conjugated Cyclic Aromatic
    Hydrocarbons for Porphyrin-Sensitized Solar Cells", Energy Environ. Sci., 2011, 4,
    1788-1795. (SCI)
    31. C.-H. Chang, Y.-T. Hu, C.-F. Lo, L. Luo, H.-M. Lin, C.-H. Chang, C.-Y. Lin,* E.
    W.-G. Diau,* T.-K. Wu,* "Photoactivation Studies of Zinc Porphyrin-Myoglobin
    System and Its Ap-plication for Light-Chemical Energy Conversion", Int. J. Biol.
    Sci., 2011, 7, 1203-1213. (SCI)
    32. C.-F. Lo, S.-J. Hsu, C.-L. Wang, Y.-H. Cheng, H.-P. Lu, E. W.-G. Diau,* C.-Y.
    Lin,* "Tuning Spectral and Electrochemical Properties of Porphyrin-sensitized
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