Session Details

[F1232-2pm]09. Coordination Chemistry, Organometallic Chemistry

Tue. Mar 19, 2024 1:00 PM - 3:40 PM JST
Tue. Mar 19, 2024 4:00 AM - 6:40 AM UTC
F1232(1232, Bldg. 12 [3F])
Chair: Kazuki Tanifuji, Yasuomi Yamazaki

[F1232-2pm-01]Synthesis, structure, and methane oxidation of a tricopper complex with a methane-binding sites near the active center

○Kyoka Akamatsu1, Kyosuke Fujikawa1, Masahito Kodera1 (1. Doshisha university)
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[F1232-2pm-02]Synthesis, structure, and methane oxidation of a dicopper complex with hexadentate ligand having a hydrophobic pocket

○Yukiya Hayashi1, Kyosuke Fujikawa1, Masahito Kodera1 (1. Doshisha University)
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[F1232-2pm-03]Reactivity of Copper(I) Complexes Supported by a Tetradentate Amine Ligand Bearing Guanidino Groups with peracids or acids.

○Rin ITO1, Hideki SUGIMOTO1, Shinobu ITOH1 (1. Osaka University)
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[F1232-2pm-04]The effect of a side-chain indole group for conversion of Cu(II)-phenolate to Cu(II)-phenoxyl radical complexes by O2

○Hoshihiko Kaneshiro1, Yuichi Shimazaki1, Tatsuo Yajima2 (1. Graduate School of Science and Engineering Ibaraki University, 2. Faculty of Chemistry, Materials and Bioengineering, Kansai University)
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[F1232-2pm-05]Self-regulated Sequential CuAAC Reaction Directed by Coordination

○Haruki Horiuchi1 (1. Hiroshima University)
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[F1232-2pm-06]Development of electrode-supported catalysts with CO2 reduction ability using electrochemical polymerization of metal porphyrin complexes

○Senri Katsuhira1, Takumi Matsuzaki1, Yutaka Saga1, Tetsuya Kanbe1, Mio Kondo1,2,3, Shigeyuki Masaoka1 (1. Osaka University, 2. Tokyo Tech., 3. JST PRESTO)
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[F1232-2pm-07]Electrochemical CO2 Reduction by a Framework Catalyst Based on Copper Porphyrin Complex Bearing Pyrene Moieties

○Marc Alec Dominic Ong Yau1, Kento Kosugi1, Maho Imai1, Yutaka Saga1, Tetsuya Kambe1, Mio Kondo2,1,3, Shigeyuki Masaoka1 (1. Osaka University Graduate School of Engineering, 2. Tokyo Institute of Technology Graduate School of Science, 3. JST PRESTO)
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Break

[F1232-2pm-08]Electrochemical Water Oxidation by a TiO2 Electrode Modified with a Novel Cu Porphyrin Molecular Catalyst Having a Pyridyl Anchor

○Takumi Nakamura1, Hironobu Ozawa1, Ken Sakai1 (1. Kyushu Univ.)
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[F1232-2pm-09]Photoelectrocatalytic Water Oxidation Performance of the TiO2 Photoanode Modified with Novel Cationic Cu Porphyrin and Polypyridyl Ruthenium Photosensitizer

○Xin Yan1, Ken Sakai1, Hironobu Ozawa1 (1. Kyushu University)
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[F1232-2pm-10]Photocatalytic Ammonia Production with Water as Proton Source

○Yoshiki Endo1, Yasuomi YAMAZAKI1, Yoshiaki NISHIBAYASHI1 (1. School of Engineering, The University of Tokyo)
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[F1232-2pm-11]Unique Reactivity of Molybdenum-Oxo Complexes for Nitrogen Fixation

○Yoshikatsu KAMEDA1, Shun Suginome1, Yoshiaki NIshibayashi1 (1. School of Engineering, The University of Tokyo)
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[F1232-2pm-12]Reduction of carbon dioxide to methane with silanes by using the synergistic effect of cationic zirconium complexes and B(C6F5)3

○Kakeru Maeda1, Akihiko Ishii1, Norio Nakata1 (1. Graduate School of Science and Engineering, Saitama Univ.)
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[F1232-2pm-13]Catalytic Reactions with Pyridine-Based Metal-Organic Layer

○Kengo Honda1, Hiroyuki Arafune2, Takahiro Sawano3, Ryo Takeuchi1 (1. Aoyama Gakin University, 2. National Institute of Technology, Tsuruoka College, 3. Shimane University)
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[F1232-2pm-14]Catalytic Nitrogen Fixation Using Visible-Light Photosensitizers

○Takahiro kubo Kubo1, Yasuomi YAMAZAKI1, Yoshiaki Nishibayasi1 (1. The University of Tokyo)
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[F1232-2pm-15]Catalytic Conversion of Dinitrogen to Isocyanate with Newly Prepared Molybdenum−Nitride Complexes

○Keita Sugiyama1, Shun Suginome1, Yoshiaki Nishibayashi1 (1. School of Engineering, The University of Tokyo)
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