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You are here: Home1 / Faculty2 / Members3 / Chair Professor Ilhyong Ryu

Chair Professor

Chair Professor Ilhyong Ryu

柳日馨Ilhyong Ryu

Chair Professor Ilhyong Ryu

Chair Professor

TEL | 03-5712121 #56519

Office | R341, SCBII

Email | ryu@nycu.edu.tw

ORCID

Education

1973  B.Sc.  Nagoya University, Department of Applied Chemistry

1978  Ph.D.  Osaka University, Department of Petroleum Chemistry

Experiences

1978-1980   JSPS Postdoctoral Fellow, Osaka University

1980-1988   Research Associate, Osaka University

1988-1995   Assistant Professor, Osaka University

1991-1992   Visiting Scientist, University of Ottawa, Department of Chemistry

1995-1999   Associate Professor, Osaka University

2000-2016   Full Professor, Osaka Prefecture University

2016-2022   Specially Appointed Professor, Osaka Prefecture University

2016-2022   Chair Professor, National Chiao Tung University

2022-present  Specially Appointed Professor, Osaka Metropolitan University

2023-present  Lifetime Chair Professor, National Yang Ming Chiao Tung University

Honors

  • 1990  Progress Award in Synthetic Organic Chemistry, Japan
  • 2004  Chemical Society of Japan Award for Creative Work
  • 2014  Society Award for Synthetic Organic Chemistry, Japan
  • 2020  Chief Advisor of JST CREST program “Innovative Reactions”
  • 2022  International Advisory Board of Helvetica Chimica Acta
  • 2022  BCSJ Award from the Chemical Society of Japan
  • 2023  International Advisory Board of Chemical Communicationsa

Publication

works

  1. The Minisci Reaction by an MW-Boost. A Simple Protocol for Site-Selective Dehydrogenative Cross-Coupling between Nitrogen-Aromatics and C(sp3)-H Bonds, Jou, S. -P.; Wu, Y. -K.; Fukuyama, T.; Fujii, S.; Ryu, I. Chem. Eur. J. 2025, e202501135.
  2. The Use of a Diagonal Photoflow System Combined with a High-Power UV LED in High-Speed C-H Bromination Reactions, Fukuyama, T.; Kasakado, T.; Takahashi, Y.; Takamura, K.; Ryu, I. Asian J. Org. Chem. 2025, 17, e202500292.
  3. The Use of a Cativa-type Catalyst for Self-Reductive Decarbonylation of Long Chain Aliphatic Carboxylic Acids to Noralkanes, Fukuyama, T.; Kaneko, M.; Fukunaga, T.; Ryu, I. Chem. Cat. Chem. 2025, 17, e202401370.
  4. Efficient Flow Synthesis of Glycidyl Ether Using BuSnCl3 as a Mild Lewis Acid, Kasakado, T.; Nakamura, M.; Nishizawa, A.; Hosomi, T.; Ryu, I.; Fukuyama, T. Synthesis, 2024, 56, 3142-3146.
  5. Flow Deprotection of tert-Butyl Ester of Poly(n-Butyl Methacrylate-b-tert-Butyl Methacrylate) by Solid Catalysts Leading to Acidic Di-block Copolymers, R. Takabayashi, S. Feser, H. Yonehara, M. Hyodo, I. Ryu, T. Fukuyama, Polymer Journal, 2025, 57, 215-224.
  6. CO-Boosted Protocol for the Photocatalytic C-H Thiolation of Aldehydes Using Phenylthiobenzenesulfonate, L. -W. Pan, M. Taniguchi, M. Hyodo, I. Ryu, Eur. J. Org. Chem. 2024, 27, e202400138
  7. 2-Bis(phenylsulfonyl)ethylene (BPSE). A Potent Radical C2 Synthon Available in the Radical and Electron-Transfer-Based Organic Synthesis, Sumino, S.; Ryu, I.; Robert, F.; Landais, Y. Synthesis, 2024, 56, 3233-3246.
  8. Protocol for the Photocatalytic Hydroxyalkenylation of Alkenes Using 1,2-Bis(phenylsulfonyl)ethylene and Water, Tsai, C. -Y.; Chen, C. -Y.; Wu, Y. -K.; Ryu, I. Helv. Chimica Acta, 2024, 107, e202400017.
  9. Photo flow protocol for bromoallylation of alkynes and alkenes, Fukuyama, T.; Dakegata, A.; Ryu, I. Arkivoc 2024 (2) 202312077.
  10. Photocatalytic C(sp3)-H Thiolation by a Double SH2 Strategy Using Thiosulfonates, Taniguchi, N.; Hyodo, M.; Pan, L. -W.; Ryu, I. Chem. Commun. 2023, 59, 14895-14862.
  11. Electron-Transfer Protocol for the Hydroxyalkenylation of Alkenes Using 1,2-Bis(phenylsulfonyl)ethylene, Tsai, C. -Y.; Jhang, Y. -J.; Wu, Y. -K.; Ryu, I. Angew. Chem. Int. Ed. 2023, 62, e202311807.
  12. Accelerated Nitroxide-Mediated Polymerization of Styrene and Butyl Acrylate Initiated by BlocBuilder MA Using Flow Reactors, Takabayashi, R.; Ryu, I.; Fukuyama, T. Polym. Chem. 2023, 14, 4515-4520.
  13. Photocatalytic Oxidative Cleavage of Alkenes by Molecular Oxygen: Reaction Scope, Mechanistic Insights, and Flow Application, Shih, Y. -L.; Wu, Y. -K.; Hyodo, M.; Ryu, I. J. Org. Chem. 2023, 88, 6548-6552.
  14. Phosphine-Free Aminocarbonylation Using Pd/DBU Catalyst: Carbonylative Coupling of Aryl Iodides and Amines, Picard, B.; Fukuyama, T.; Ryu, I. J. Org. Chem. 2023, 88, 5220-5225.
  15. Bromine-Radical-Mediated Bromoallylation of C–C Unsaturated Bonds: A Facile Access to 1,4-, 1,5-, 1,6-, and 1,7-Dienes and Related Compounds, Sumino, S.; Ryu, I. Synlett 2023, 34, 1001-1011.
  16. Cross-coupling reactions catalyzed by RuHCl(CO)(PPh3)3, Fukuyama, T.; Picard, B.; Ryu, I.
    Catalysis Science & Technology, 2023, 13, 600-610.
  17. RuHCl(CO)(PPh3)3-Catalyzed Isomerization of Homoallyl Silyl Ethers and Carbonates to Allyl Silyl Ethers and Carbonates, Fukuyama, T.; Kuwahara, T.; Yamamoto, Y.; Picard, B.; Ryu, I. Adv. Synth. Catal. 2023, 365, 1147-1151.
  18. Expansion of Photocatalytic C(sp3)-H Functionalization to Allylation, Alkynylation, and Imination
    Shi, Y. -L.; Huang, S. -H.; Wu, Y. -K.; Ryu, I. Bull. Chem. Soc. Jpn, 2022, 95, 1501-1505.
  19. New Directions in Radical Carbonylation Chemistry: Combination with Electron Catalysis, Photocatalysis and Ring-opening, Kawamoto, T.; Fukuyama, T.; Picard, B.; Ryu, I. Chem. Commun. 2022, 58, 7608-7617.
  20. Improved Efficiency of Photo-Induced Synthetic Reactions Enabled by Advanced Photo Flow Technologies, Fukuyama, T.; Kasakado, T.; Hyodo, M.; Ryu, I. Photochem. Photobiol. Sci. 2022, 21, 761–775.
  21. Site-Selective C(sp3)-H Alkenylation Using Decatungstate Anion as Photocatalyst Wang, Y.-T.; Shih, Y.-L.; Wu, Y.-K.; Ryu, I. Adv. Synth. Catal. 2022, 364, 1039-1043.
  22. High-speed C-H Chlorination of Ethylene Carbonate using a New Photoflow Setup, Kasakado, T.; Fukuyama, T.; Nakagawa, T.; Taguchi, S.; Ryu, I. Beilstein J. Org. Chem. 2022, 18, 152-158.
  23. Using High-Power UV-LED to Accelerate a Decatungstate-Anion-Catalyzed Reaction: A Model Study for the Quick Oxidation of Benzyl Alcohol to Benzoic Acid Using Molecular Oxygen, Hyodo, M.; Kasakado, T.; Fukuyama, T.; Ryu, I. Micromachines, 2021, 12, 1307.
  24. Site-Selective Alkenylation of Unactivated C(sp3)−H Bonds Mediated by Compact Sulfate Radical, Ueda, M.; Kamikawa, K.; Fukuyama, T.; Wang, Y. T.; Wu, Y-K.; Ryu, I. Angew. Chem. Int. Ed. 2021, 60, pp. 3545-3550.
  25. Borane evolution and its application to organic synthesis using the phase-vanishing method, Soga, N.; Yoshiki, T.; Sato, A.; Kawamoto, T.; Ryu, I.; Matsubara, H. Tetrahedron Lett. 2021, 69, article 152977.
  26. A New Protocol for Catalytic Reduction of Alkyl Chlorides Using an Iridium/Bis(benzimidazol-2′-yl)pyridine Catalyst and Triethylsilane, Fukuyama, T.; Hamada, Y.; Ryu, I. Synthesis 2021, 54, pp. 3404-3408.
  27. Greener Synthesis of Pristane by Flow Dehydrative Hydrogenation of Allylic Alcohol Using a Packed-Bed Reactor Charged by Pd/C as a Single Catalyst, Kasakado,T.; Hirobe, Y.; Furuta, A.; Hyodo, M.; Fukuyama, T.; Ryu, I. Molecules 2021, 26, pp. 5845-5853.
  28. Blacklight-Induced Hydroxylation of Arylboronic Acids Leading to Hydroxyarenes Using Molecular Oxygen and Tetrabutylammonium Borohydride, T. Kawamoto, I. Ryu, Helv. Chim. Acta, 2021, 104, e2100102.
  29. Pd/light-induced alkyl–alkenyl coupling reaction between unactivated alkyl iodides and alkenylboronic acids, Huang, H. -J.; Wang, Y. -T.; Wu, Y. -K.; Ryu, I. Org. Chem. Front., 2020, 7, pp. 1266 – 1270.
  30. Flow Friedel–Crafts alkylation of 1-adamantanol with arenes using HO-SAS as an immobilized acid catalyst, Kasakado, T.; Hyodo, M.; Furuta, A.; Kamardine, A.; Ryu, I. Fukuyama, T. J. Chin. Chem. 2022, 67, pp 2253-2257.
  31. Synthesis of Aliphatic Amides through a Photoredox Catalyzed Radical Carbonylation Involving Organosilicates as Alkyl Radical Precursors Cartier, A.; Levernier, E.; Dhimane, A-L.; Fukuyama, T.; Ollivier, C.; Ryu, I.; Fensterbank, L.; Adv. Synth. Catal., 2020, 362, pp. 2254-2259.
  32. Syntheses of Diarylethenes by Perylene-catalyzed Photodesulfonylation from Ethenyl Sulfones
    Watanabe, H.; Takemoto, M.; Adachi, K.; Okuda, Y.; Dakegata, A.; Fukuyama, T.;, Ryu, I., Wakamatsu, K.; Orita, A. Chem. Lett., 2020, 49, pp. 409-412.
  33. Site-Selective C(sp3)–H Functionalization of Fluorinated Alkanes Driven by Polar Effects Using a Tungstate Photocatalyst, Fukuyama, T.; Nishikawa, T.; Ryu, I. Eur. J. Org. Chem. 2020, pp. 1424-1428.

Research Highlights

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  • Email

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