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闕居振 教授 / Chu-Chen Chueh Professor

柔性光電材料與元件實驗室 Soft Optoelectronic Materials and Devices Lab 二館 共軛高分子可溶液製程之有機與有機-無機雜化半導體有機光電半導體元件 Conjugated PolymersSolution processable organic/organic-inorganic hybrid semiconductors Organic opto-electronic devices (02)3366-1734 BLDG.II (02)3366-4685 cchueh@ntu.edu.tw N605 闕居振 Chu-Chen Chueh 化工二館(鄭江樓) CheE BLDG.II 教授 Professor N606
    • Education Background
      • National Taiwan University   B.S. in Chemical Engineering  ,2004
      • National Taiwan University   Ph.D. in Chemical Engineering  ,2010
      • University of Washington Postdoc in Materials Science and Engineering,2011-2016

     

    • Research Topic
      • Solution processable organic/organic-inorganic hybrid materials have attracted increasing research interests in recent years due to their respectable compatibility for soft electronic applications and mass production. Our research focuses on the exploitation of solution processable organic/organic-inorganic hybrid semiconductors and the investigation of their structure-property relationship and associated opto-physical properties. With the fundamental understanding of material properties, we extend our knowledge to various kinds of printable opto-electronic devices including light-emitting diodes (LEDs), field-effect transistors (FETs), memory, and solar cells. Through the integrated and comprehensive studies including material exploration as well as interface/device engineering, we aim to develop novel solutions for the next generation printable opto-electronics and contribute to this society.
    1. 2018 指導學生李佳欣、陳芷儀、陳炯翰獲台灣化工年會英語口頭競賽佳作
    2. 2018 指導學生蔡長紘獲臺灣大學科林論文獎碩士論文優等獎
    3. 2018 指導學生陳芷儀獲財團法人李長榮教育基金會獎學金-銀質獎
    4. 2019 指導學生陳炯翰獲臺灣大學學士班學生論文優良獎及化工系松柏優秀學士專題競賽最佳海報銅獎
    5. 2019 指導學生廖明筠獲財團法人李長榮教育基金會獎學金-銀質獎(第九屆)
    6. 2019 指導學生黃彥文獲台灣化工年會英語口頭競賽優勝
    7. 2019 Highly Cited Researcher Recognized by Clarivate Analytics
    8. 2020 指導學生陳芷儀獲Bowei Research Conference of Taiwan 海報競賽優勝
    9. 2020 指導學生黃彥文獲化工系108學年度學士專題海報競賽松柏金獎
    10. 2020 指導學生黃彥文獲中國工程師學會學生分會工程論文材料組特優
    11. 2020 科技部優秀年輕學者計畫 (2020-2023)
    12. 2020 台灣化工學會學術勵進獎
    13. 2020 中華民國高分子學會傑出高分子青年科技獎
    14. 2020 I&EC Research 2020 Class of Influential Researchers
    15. 2021 蘇莉芸博士獲科技部博士後研究學術研究獎
    16. 2021 指導學生林昱寬、楊媮婷獲大專學生研究計畫
    17. 2021 科技部 2030 新秀學者計畫 (2021-2024)
    18. 2021 台灣化工學會李長榮學術研究傑出青年教授獎
    19. 2021 指導學生廖明筠獲臺灣大學科林論文獎碩士論文優等獎
    20. 2022 指導學生余明軒、陳炯翰獲台灣化工年會英語口頭競賽佳作 (第68屆)
    21. 2022 指導學生楊媮婷獲化工系110學年度學士專題海報競賽松柏金獎
    22. 2022 台灣大學110學年度專任教師教學優良獎
    23. 2022 111年度吳大猷先生紀念獎
    24. 2022 未來科技獎 (總計畫主持人)
    25. 2022 指導學生陳炯翰、林昱寬獲台灣化工年會英語口頭競賽優勝與佳作 (第69屆)
    26. 2022 指導學生曾宇呈獲義芳化學鼓勵優秀博士生獎學金 (2022-2024)
    1. I. S. Zhidkov*, M. H. Yu, A. I. Kukharenko, P. C. Han, S. O. Cholakh, W. Y. Yu, K. C. W. Wu, C. C. Chueh, E. Z. Kurmaev*, “The Stability of Hybrid Perovskites with UiO-66 Metal-Organic Framework Additives to Heat, Light, and Humidity”, Nanomaterials 2022, 12, 4349. (IF: 5.719) (SCI)
    2. Y. Wang, H. Yu*, X. Wu, D. Zhao, S. Zhang, X. Zou, B. Li, D. Gao, Z. Li, X. Xia, X. Chen, X. Lu, H. Yan, C. C. Chueh, Alex K. Y. Jen, Z. Zhu*, “Boosting the Fill Factor through Sequential Deposition and Homo Hydrocarbon Solvent toward Efficient and Stable All-Polymer Solar Cells”, Adv. Energy. Mater. 2022, 12, 2202729. (IF: 29.698) (SCI)
    3. Y. S. Wu, J. S. Li, C. Y. Chang, W. He, T. Michinobu, Y. C. Lin*, W. C. Chen*, C. C. Chueh*, “Structural Influences of Proquinodial Acceptor Moieties on Transistor Performance and Doping Capability for Diketopyrrolopyrrole-based Dual-Acceptor Conjugated Polymers”, J. Mater. Chem. C 2022, 10, 17936 - 17944. (IF: 8.067) (SCI)
    4. C. H. Chen, C. H. Hsu, I C. Ni, B. H. Lin, C. I Wu, C. C. Kuo*, C. C. Chueh*, “Regulating the Phase Distribution of Quasi-2D Perovskites Using a Three-Dimensional Cyclic Molecule Toward Improved Light-Emitting Performance”, Nanoscale 2022, 14, 17409-17414. (IF: 8.307) (SCI)
    5. X. Li, Y. Liu, Q. Sun, Z. Huangfu, W. H. Huang, Z. Wang*, C. C. Chueh, C. L. Chen, Z. Zhu*, “Effects of Cationic and Anionic Defects on NiFe LDH in Electrocatalytic Oxygen Evolution”, ACS Sustainable Chem. Eng. 2022, 10, 14474-14485. (IF: 9.224) (SCI)
    6. P. H. Chueh, C. Y. Chang, Y. C. Lin*, W. C. Chen*, C. C. Chueh*, “Stretchable Diketopyrrolopyrrole-Based Conjugated Polymers with Asymmetric Sidechain Designs for Field-Effect Transistor Applications”, J. Taiwan. Inst. Chem. Eng. 2022, 140, 104566. (IF: 5.447) (SCI)
    7. Y. T. Yang, Y. S. Wu, W. He, H. C. Tien, W. C. Yang, T. Michinobu, W. C. Chen, W. Y. Lee*, C. C. Chueh*, “Tuning Ambipolarity of the Conjugated Polymer Channel Layers of Floating-Gate Free Transistors: From Volatile Memories to Artificial Synapses”, Adv. Sci. 2022, 9, 2203025. (IF: 17.521) (SCI) (feature as frontispiece)
    8. M. H. Yu, P. C. Han, C. C. Lee, I C. Ni, Z. Zhu, E. Z. Kurmaev, S. Furukawa, Kevin C. W. Wu*, C. C. Chueh*, “A Self-Arranged Metal-Organic Polyhedron/Fullerene Asymmetric Structure Improves the Performance of Inverted Perovskite Solar Cells”, J. Mater. Chem. C 2022, 10, 14542-14548. (IF: 8.067) (SCI)
    9. C. T. Lin*, C. T. Hsieh, T. J. Macdonald, J. F. Chang, P. C. Lin, H. Cha, L. Steier, A. Wadsworth, I. McCulloch, C. C. Chueh*, J. R. Durrant, “Water-Insensitive Electron Transport and Photoactive Layers for Improved Underwater Stability of Organic Photovoltaics”, Adv. Funct. Mater. 2022, 32, 2203487. (IF: 19.924) (SCI) (feature as inside front cover)
    10. C. Y. Chang, Y. H. Shih, W. C. Chen, C. C. Chueh*, “Influence of Side-Chain Substitution for Thiophene-based Conjugated Polymers on the Charge Transport Properties: Carboxylate Ester Group versus Carboxamide Group”, Org. Electron. 2022, 110, 106634. (IF: 3.868) (SCI)
    11. I. S. Zhidkov*, A. F. Akbulatov, M. I. Ustinova, A. I. Kukharenko, L. A. Frolova, S. O. Cholakh, C. C. Chueh, P. A. Troshin, E. Z. Kurmaev, “Temperature Dependence of Photochemical Degradation of MAPbBr3 Perovskite”, Coatings 2022, 12, 1066. (IF: 3.236) (SCI)
    12. Y. Liu, X. Li, Q. Sun, Z. Wang*, W. H. Huang, X. Guo, Z. Fan, R. Ye, Y. Zhu, C. C. Chueh, C. L. Chen, Z. Zhu*, “Freestanding 2D NiFe Metal-Organic Framework Nanosheets: Facilitating Proton Transfer via Organic Ligands for Efficient Oxygen Evolution Reaction”, Small 2022, 18, 2201076. (IF: 15.153) (SCI)
    13. B. Li, X. Wu, S. Zhang, Z. Li, D. Gao, X. Chen, S. Xiao, C. C. Chueh, A. K. Y. Jen, Z. Zhu*, “Efficient and Stable Cs2AgBiBr6 Double Perovskite Solar Cells Through In-Situ Surface Modulation”, Chem. Eng. J. 2022, 446, 137144. (IF: 16.744) (SCI)
    14. Y. T. Yang, H. C. Tien, C. C. Chueh*, W. Y. Lee*, “Polymer Synaptic Transistors from Memory to Neuromorphic Computing”, Mater. Chem. Phys. 2022, 287, 126263. (IF: 4.778) (SCI)
    15. L. Y. Su*, H. H. Huang, C. E. Tsai, C. H. Hou, J. J. Shyue, C. H. Lu, C. W. Pao, M. H. Yu, L. Wang*, C. C. Chueh*, “Improving Thermal and Photostability of Polymer Solar Cells by Robust Interface Engineering”, Small 2022, 18, 2107834. (IF: 15.153) (SCI) (Rising Stars)
    16. Y. C. Tseng, A. Kato, J. F. Chang, W. C. Chen, T. Higashihara*, C. C. Chueh*, “Impact of the Segment Ratio on a Donor-Acceptor All-Conjugated Block Copolymer in Single-Component Organic Solar Cells”, Nanoscale 2022, 14, 5472-5481. (IF: 8.307) (SCI)
    17. Y. C. Lin, K. Terayama, K. Yoshida, P. J. Yu, P. H. Chueh, C. C. Chueh, T. Higashihara*, W. C. Chen*, “Strain-Insensitive Naphthalene-Diimide-Based Conjugated Polymers Through Sequential Regularity Control”, Mater. Chem. Front. 2022, 6, 891-900. (IF: 8.683) (SCI)
    18. W. C. Yang, Y. C. Lin, S. Inagaki, H. Shimizu, L. C. Hsu, E. Ercan, C. C. Chueh, T. Higashihara*, W. C. Chen*, “Low-Energy-Consumption and Electret-Free Photosynaptic Transistor Utilizing Poly(3-hexylthiophene)-Based Conjugated Block Copolymers”, Adv. Sci, 2022, 9. 2105190. (IF: 17.521) (SCI)
    19. H. Liu, C. T. Hsieh, Y. He, C. C. Chueh*, Z. Li*, “Phenalene - A New Ring-Locked Vinyl Bridge for Nonfullerene Acceptors with Enhanced Chemical and Photochemical Stabilities”, Front. Electron. Mater. 2022, 2, 851294.
    20. C. H. Chen, Y. H. Kuo, Y. K. Lin, I. C. Ni, B. H. Lin, C. I. Wu, H. L. Yip, C. C. Kuo*, C. C. Chueh*, “Enhancing the Performance of Quasi-2D Perovskite Light-Emitting Diodes Using Natural Cyclic Molecules with Distinct Phase Regulation Behaviors”, ACS Appl. Mater. Interfaces. 2022, 14, 9587-9596. (IF: 10.383) (SCI)