Okura Ichiro | Department Of Bioengineering Tokyo Institute Of Technology
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概要
関連著者
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Okura Ichiro
Department Of Bioengineering Tokyo Institute Of Technology
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OKURA Ichiro
Department of Bioengineering, Tokyo Institute of Technology
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大倉 一郎
東京工業大学大学院
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Amao Y
National Aerospace Lab. Tokyo
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Amao Y
Oita Univ. Oita
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Amao Yutaka
Fluid Science Research Center National Aerospace Laboratory
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Kamachi Toshiaki
Department Of Bioengineering Tokyo Institute Of Technology
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宮下 徳治
東北大多元研
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MIYASHITA Tokuji
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University
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KAMACHI Toshiaki
Department of Bioengineering, Tokyo Institute of Technology
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Miyashita Tokuji
Institute For Chemical Reaction Science Tohoku University
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宮下 徳治
Institute Of Multidisciplinary Research For Advanced Materials Tohoku University
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Aono Shigetoshi
Department Of Bioengineering Tokyo Institute Of Technology
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ASAI Keisuke
Aerodynamic Division, National Aerospace Laboratory
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Amao Yutaka
Aerodynamic Division National Aerospace Laboratory
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Asai K
Nagasaki Univ. Nagasaki
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Amao Yutaka
Aerodynamics Division National Aerospace Laboratory
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Amao Yutaka
Department Of Applied Chemistry Oita University
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宮下 徳治
東北大学多元物質科学研究所
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AMAO Yutaka
Department of Applied Chemistry, Oita University
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ASAKURA Noriyuki
Department of Bioengineering, Tokyo Institute of Technology
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Asakura Noriyuki
Department Of Bioengineering Tokyo Institute Of Technology
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Kamachi T
Tokyo Inst. Technol. Yokohama Jpn
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Tabata Kenji
Department Of Applied Chmistry Faculty Of Engineering University Of Miyazaki
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Kaji Naruhiko
Department of Chemical Engineering, Tokyo Institute of Technology
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Tabata Kenji
Department Of Bioengineering Faculty Of Bioscience And Biotechnology Tokyo Institute Of Technology
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Tabata Kenji
Department Of Bioengineering Tokyo Institute Of Technology
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AMANO Yutaka
Aerodynamic Division, National Aerospace Laboratory
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LEE Sang-Kyung
Department of Bioengineering, Tokyo Institute of Technology
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HIRAISHI Tomohiro
Department of Bioengineering, Tokyo Institute of Technology
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Hiraishi T
Department Of Bioengineering Tokyo Institute Of Technology
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AMANO Yutaka
Department of Applied Chemistry, Oita University
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Lee Sang-kyung
Department Of Bioengineering Hanyang University
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Okura Ichiro
Tokyo Inst. Of Technol. Yokohama Jpn
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Nishisaka Tsuyoshi
Health Science Center, Tokyo Noh-Koh University
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Kusunoki Shin
Department of Chemical Engineering, Tokyo Institute of Technology
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Okura Ichiro
Department of Chemical Engineering, Tokyo Institute of Technology
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ITO YOSHITAKA
Department of General and Cardiothoracic Surgery, Kanazawa University School of Medicine
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ISHIKAWA Yuichi
Department of Pathology, the Cancer Institute of JFCR
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Sugimori Daisuke
Department of Industrial System, Faculty of Symbiotic Systems Science, Fukushima University
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INOUE TOMOYUKI
Department of Bioengineering, Tokyo Institute of Technology
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NISHIDE Hiroyuki
Department of Polymer Chemistry, Advanced Research Institute For Science and Engineering, Waseda Uni
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Kumar Shrestha
Department Of Bioengineering Tokyo Institute Of Technology
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Inoue T
Tokyo Inst. Technol. Yokohama Jpn
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KIMURA EIICHI
Department of Internal Medicine. Nippon Medical School
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Yamamoto Yasuhiko
Department Of Biochemistry And Molecular Vascular Biology Kanazawa University Graduate School Of Med
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SAJI Tetsuo
Department of Chemistry and Materials Science, Tokyo Institute of Technology
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Inoue Tomoyuki
Department Of Applied Chemistry Waseda University
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Inoue T
Department Of Bioengineering Tokyo Institute Of Technology
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Tada Toshiji
Research Institute For Advanced Science And Technology Osaka Prefecture University
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OHYA Hiroaki
Institute for Life support Technology, Yamagata Public Corporation for the Development of Industry
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FUKUI Kouichi
Institute for Life Support Technology, Yamagata Technopolis Foundation
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SHINOHARA Hiromi
Department of Polymer Chemistry, Waseda University
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YAMANE Keisuke
Department of Electrical and Electronic Information Engineering, Toyohashi University of Technology
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Hirose Yo
Department Of Chemical Engineering Tsinghua University:graduate School Of Bioscience And Biotechnolo
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Shinohara Hiromi
Department Of Anesthesia Kyoto University Hospital
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Shinohara Hiromi
Department Of Polymer Chemistry Waseda University
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Nishide Hiroyuki
Department Of Applied Chemistry Waseda University
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Kobayashi Masatoshi
Department Of Anatomy & Histology Kurume University School Of Medicine
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Ito Yoshitaka
Department Of Cardiology Aichi Medical University
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Lee S‐k
Tokyo Inst. Technol. Yokohama
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Lee Sang-kyung
Department Of Bioengineering Tokyo Institute Of Technology
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Ishikawa Yuichi
Department Of Applied Chemistry Faculty Of Engineering Oita University
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Hoshino Mikio
The Institute Of Physical And Chemical Research
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Tan Xiang
Graduate School Of Science And Engineering Ibaraki University
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Saji Tetsuo
Department Of Chemical Engineering Tokyo Institute Of Technology
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Ohya Hiroaki
Institute For Life Support Technology Yamagata Technopolis Foundation
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Asai K
Aerodynamics Research Group The Institute Of Space Technology And Aeronautics Japan Aerospace Explor
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Wohrle Dieter
Institute Of Organic And Macromolecular Chemistry University Of Bremen
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Wohrle Dieter
Institute Fur Organische Und Makromolekulare Chemie University Of Bremen
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Fukui Kouichi
Institute For Life Support Technology Yamagata Technopolis Foundation
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Yamane Keisuke
Department Of Bioengineering Tokyo Institute Of Technology
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Mitsuo Kazunori
Aerodynamics Research Group The Institute Of Space Technology And Aeronautics Japan Aerospace Explor
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FURUTO Takao
Department of Bioengineering, Tokyo Institute of Technology
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ASAI Keisuke
National Aerospace Laboratory
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IIDA Shin
Department of Bioengineering, Tokyo Institute of Technology
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KAWANO Yusuke
Department of Bioengineering, Tokyo Institute of Technology
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Iida Shin
Department Of Bioengineering Tokyo Institute Of Technology
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Kawano Yusuke
Department Of Bioengineering Tokyo Institute Of Technology
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NISHISAKA Tsuyoshi
Japan Advanced Institute of Science and Technology
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FUKAMI Takaaki
Department of Bioengineering, Tokyo Institute of Technology
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SAKAMOTO Fuminori
Graduate School of Science and Engineering, Ibaraki University
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SUMIYA Tomoyuki
Graduate School of Science and Engineering, Ibaraki University
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FUJITA Masaaki
Graduate School of Science and Engineering, Ibaraki University
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SUZUKI Eiji
Graduate School of Science and Engineering, Ibaraki University
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FUJII Yuki
Graduate School of Science and Engineering, Ibaraki University
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TAKEGUCHI Masayuki
Department of Bioengineering, Tokyo Institute of Technology
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Takeguchi Masayuki
Department Of Bioengineering Tokyo Institute Of Technology
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Aono Shigetoshi
Department of Bioengineering, Tokyo Institute of Technology
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Okura I
Tokyo Inst. Technol. Yokohama Jpn
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HASUMI Fumihiko
Department of Biochemistry, Numazu College of Technology
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Furuto Takao
Department Of Bioengineering Tokyo Institute Of Technology
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Sakamoto Fuminori
Graduate School Of Science And Engineering Ibaraki University
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Fukami Takaaki
Department Of Bioengineering Tokyo Institute Of Technology
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Ohya Hiroaki
Institute For Life Support Technology
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BANZAWA RYO
Department of Chemistry and Biology Engineering, Fukui National College of Technology
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KUROZUMI MARI
Department of Chemistry and Biology Engineering, Fukui National College of Technology
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GOTO Ryohei
Department of Bioengineering, Tokyo Institute of Technology
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Goto Ryohei
Department Of Bioengineering Tokyo Institute Of Technology
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Banzawa Ryo
Department Of Chemistry And Biology Engineering Fukui National College Of Technology
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Kurozumi M
Fukui National Coll. Technol. Fukui
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Kurozumi Mari
Department Of Chemistry And Biology Engineering Fukui National College Of Technology
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Hasumi Fumihiko
Department Of Chemistry And Biochemistry Numazu College Of Technology
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TESHIMA Chitoku
Department of Chemistry and Biochemistry, Numazu College of Technology
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Fujita Masaaki
Graduate School Of Science And Engineering Ibaraki University
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Teshima Chitoku
Department Of Chemistry And Biochemistry Numazu College Of Technology
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Kimura Eiichi
Department Of Critical Care Med Nippon Medical School
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Ito Yoshitaka
Department Of Chemistry And Materials Science Tokyo Institute Of Technology
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Sumiya Tomoyuki
Graduate School Of Science And Engineering Ibaraki University
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Fujii Yuki
Graduate School Of Science And Engineering Ibaraki University
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Kimura Eiichi
Department Of Bioengineering Tokyo Institute Of Technology
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Suzuki Eiji
Graduate School Of Science And Engineering Ibaraki University
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Sugimori Daisuke
Department Of Chemistry And Biology Engineering Fukui National College Of Technology
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Inoue Yoshio
Department Of Biomolecular Engineering Graduate School Of Engineering Tohoku University
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Takeuchi Makoto
Department Of Biology Faculty Of Science Okayama University
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Nakamura Satoshi
Department Of Acoustic And Speech Research Advance Telecommunications Research Institute International
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Tabata Kenji
Tokyo Inst. Of Technol. Yokohama Jpn
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Kimura Eiichi
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo
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KOBAYASHI Eisuke
Department of Bioengineering, Tokyo Institute of Technology
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WOHRLE Dieter
Institute fur Organische und Makromolekulare Chemic, Universitat Bremen
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Amano Yutaka
Fluid Science Research Center, National Aerospace Laboratory
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TABATA Kenji
Department of Bioengineering, Tokyo Institute of Technology
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Nishisaka Tsuyoshi
Health Science Center, Tokyo University of Agriculture and Technology
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HIROSE Yo
Department of Bioengineering, Tokyo Institute of Technology
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Aono Shigetoshi
Department of Chemical Engineering, Tokyo Institute of Technology
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Yamaha Akira
The Institute of Physical and Chemical Research
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Kobayashi Masatoshi
Department of Chemical Engineering, Tokyo Institute of Technology
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Okura Ichiro
Department of Biomolecular Engineering, Tokyo Institute of Technology
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Noda Sumio
Department of Bioengineering, Tokyo Institute of Technology
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Nanai Norishige
Department of Biomolecular Engineering, Tokyo Institute of Technology
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Kinumi Yuichi
Department of Bioengineering, Tokyo Institute of Technology
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Fujie Hiroki
Department of Chemical Engineering, Tokyo Institute of Technology
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Kita Tatsuya
Department of Chemical Engineering, Tokyo Institute of Technology
著作論文
- Hydrogen Evolution from Glucose with the Combination of Glucose Dehydrogenase and Hydrogenase from A. eutrophus H16
- An Optical Sensing Material for Trace Analysis of Oxygen. Metalloporphyrin Dispersed in Poly(1-trimethylsilyl-1-propyne) Film
- Optical Oxygen Sensing Based on the Lumminescence Quenching of Europium(III) Complex Immobilized in Fluoropolymer Film
- Photoluminescent Oxygen Sensing Using Tris(acethylacetonato) 1,10-Phenanthroline Terbium(III) Complex Doped on Alumina Film
- Photophysical and Photochemical Properties of Optical Oxygen Pressure Sensor of Platinum Porphyrin - Isobutylmethacrylate - Trifluoroethylmethacrylate Copolymer Film
- Novel Optical Oxygen Pressure Sensing Materials: Platinum Porphyrin-Styrene-Trifluoroethylmethacrylate Copolymer Film
- A Novel Optical Oxygen Sensing Based on Quenching of Photoexcited Triplet State of C_ in Polystyrene Film by Oxygen Using Time-resolved Spectroscopy
- Effect of the Chain Length in Water Soluble Viologen Linked Zinc Porphyrins on Hydrogen Evolved Activity with Hydrogenase
- Thenoyltrifluoroacetonato 1, 10-Phenanthroline Europium(III)Complex Immobilized in Fluoropolymer Film as Optical Oxygen Sensing Material
- Optical Oxygen Pressure Sensing Based on Triplet-Triplet Quenching of Fullerene-Polystyrene Film Using Laser Flash Photolysis: Soccerballene C_ Versus Rugbyballene C_
- High Sensitive Oxygen Sensor Based on Quenching of Triplet-triplet Absorption of Fullerene C_-Polystyrene Film
- Photoluminescent Oxygen Sensing on a Specific Surface Area Using Phosphorescence Quenching of Pt-Porphyrin
- Photoinduced Hydrogen Evolution Using Cytochrome c_3 as a Mediator
- Optical Oxygen Sensing Material: Terbium(III) Complex Adsorbed Thim Film
- Pyrene Chemisorption Film on an Alumina Plate as an Optical Oxygen-Sensing Material
- Novel Oxygen Sensor Based on Quenching of Triplet-Triplet Absorption of Zinc Tetraphenylporphyrin
- Photoinduced Hydrogen Evolution with Hydrogenase and Cytochrome c_3
- Electroless Formation of Pressure Sensitive Thin Films of Platinum Porphyrin Using Surfactants with an Azobenzene Group
- N-Terminus Methylation of Desulfovibrio vulgaris (Miyazaki) F Cytochrome c_3
- Protoporphyrin and Zinc Protoporphyrin in the Blood of Tumor Transplanted Mice
- T-Site Selective Photocleavage of DNA by Cationic Schiff Base Complex of Manganese (III)
- Electron Spin-Echo Envelope Modulation Studies on Copper Site of Particulate Methane Monooxygenase from Methylosinus trichosporium OB3b
- Characterization and Thermostability of a Membrane-bound Hydrogenase from a Thermophilic Hydrogen Oxidizing Bacterium, Bacillus schlegelii
- Removal of Disperse Dyes by the Fungus Cunninghamella polymorpha
- Optical Oxygen Sensing Properties of Tris(4, 7 -diphenyl-1, 10' -phenanthroline) Ruthenium (II)-Polyacrylic Acid Complex Thin Film
- Optical Molecular Thermometer Based on the Fluorescence of Fullerene Dispersed in Poly (methyl methacrylate) Film
- Electron Transfer from Hydrophobic Porphyrin to Hydrophilic Viologen via the Photoexcited Singlet State in Water
- Effect of Copper(I) on Hydrogenase Activity from Desulfovibrio vulgaris (Miyazaki)
- Synthesis of Xylitol by Reduction of Xylulose with the Combination of Hydrogenase and Xylulose Reductase
- EQCM法を利用したシトクロムcの電子プール機構に関わるヘムの特定
- Photoredox properties of viologen linked porphyrins.
- Photoinduced hydrogen evolution with viologen linked porphyrin in a micellar system.
- The photoreduction of viologen dyes with palladium meso-tetraphenylporphyrintrisulfonate.
- Application of laser flash photolysis to determine association constants between Zn-TPPS3 and viologens.
- The complexation of zinc tetraphenylporphyrintrisulfonate by viologen and its role in photoredox processes.
- Bovine serum albumin coordinated iron-sulfur cluster as a hydrogenase model.
- 1H NMR conformational study of viologen-linked porphyrins.
- Photoinduced hydrogen evolution with viologen-linked zinc porphyrins.
- Photoinduced hydrogen evolution with hydrogenase using bipyridinium salts as electron carriers.