Toshima Naoki | Department Of Applied Chemistry
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概要
関連著者
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Toshima Naoki
Department Of Applied Chemistry
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TOSHIMA Naoki
Department of Materials Science and Environmental Engineering, Tokyo University of Science
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Yan Hu
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Yan Hu
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Hirai Hidefumi
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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Yan H
Sci. Univ. Tokyo In Yamaguchi Yamaguchi
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戸嶋 直樹
山口東京理科大
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Yan Hu
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Toshima Naoki
Liquid Crystal Institute And The Graduate School Of Science And Engineering Tokyo University Of Scie
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戸嶋 直樹
山口東京理科大学工学部応用化学科
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OHNO Naonori
Department of Materials science and Engineering, Science University of Tokyo
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Shiraishi Yukihide
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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Ohno Naonori
Department Of Materials Science And Engineering Science University Of Tokyo
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Gotoh Yaeko
Department Of Applied Chemistry
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Tominaga Tsuyoshi
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Lu Ping
Department Of Infectious Diseases The First Affiliated Hospital Of Chongqing Medical University
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WANG Hung-Jen
Department of Applied Chemistry, School of Engineering, The University of Tokyo
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Inokuchi Makoto
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Asanuma Hiroyuki
Department Of Chemistry And Biotechnology Graduate School Of Engineering The University Of Tokyo
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Wang Hung-jen
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Toshima Naoki
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Toshima Naoki
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo
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Makishima Shoji
Professor Emeritus Of The University Of Tokyo
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TOMINAGA Toshihiro
Department of Applied Chemistry, Okayama University of Science
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Tominaga T
Univ. Tokyo Tokyo
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WATANABE Norihisa
Department of Materials Science and Environmental Engineering, Tokyo University of Science
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SGIRAISHI Yukihide
Department of Materials Science and Engineering, Science University of Tokyo
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Iida Takeaki
Department Of Applied Chemistry Saitama University
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OCHIAI Ei-ichiro
Department of Chemistry, Juniata College
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Watanabe Norihisa
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Kawamura Shin-ichi
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Sgiraishi Yukihide
Department Of Materials Science And Engineering Science University Of Tokyo
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Ochiai Ei-ichiro
Department Of Chemistry Juniata College
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Lu Ping
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Tominaga Takeshi
Department Of Chemistry School Of Science The University Of Tokyo
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Asao Shuichiro
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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猶原 秀夫
北海道大学大学院 理学研究科
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HATTORI Yutaka
Department of Internal Medicine, School of Medicine, Keio University
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Honda Yasuyuki
Department Of Thoracic Surgery
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Honda Yasuyuki
Department Of Materials Science And Engineering Science University Of Tokyo In Yamaguchi
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KAWAMATA JUN
Department of Chemistry, Faculty of Science, Yamaguchi University
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MIYAKE Mikio
School of Materials Science, Japan Advanced Institute of Science and Technology
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Ono Masatoshi
Electrotechnical Laboratory
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Miyake M
Japan Advanced Inst. Sci. And Technol. Ishikawa
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Miyake Mikio
Advanced Institute Of Science And Technology (jaist)
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Miyake Mikio
School Of Material Science Jaist (hokuriku)
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Kawamata Jun
Department Of Chemistry And Earth Sciences Faculty Of Science Yamaguchi University
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Lu P
Univ. Tokyo Tokyo
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Hattori Yutaka
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Hattori Yutaka
Department Of Internal Medicine School Of Medicine Keio University
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Ishida Tomoko
Department Of Materials Science And Engineering Science University Of Tokyo In Yamaguchi
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TERANISHI Toshiharu
School of Materials Science, Japan Advanced Institute of Science and Technology
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TOMITA Hirofumi
Department of Cardiology, Hirosaki University Graduate School of Medicine
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FUJISATO Junichi
Department of Materials Science and Environmental Engineering, Tokyo University of Science
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KAJITA Masashi
Department of Materials Science and Engineering, Science University of Tokyo in Yamaguchi
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Inokuchi Makoto
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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KOJIMA Shin-ichi
Department of Electronic Engineering, Graduate School of Engineering, Osaksa University
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Tomita Hirofumi
Department Of Cardiology Hirosaki University Graduate School Of Medicine Hirosaki Japan
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Shiraishi Yukihide
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Asakura Toshihide
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo:(present Address)p
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Asakura Toshihide
Department Of Fuel Cycle Safety Japan Atomic Energy Research Institute
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Yan Hu
Department Of Materials Science And Engineering Science University Of Tokyo In Yamaguchi
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Yan Hu
Department Of Materials Science And Engineering Science University Of Tokyo
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NAKATA Ken
Department of Orthopaedic Surgery, Osaka University Medical School
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SAKAKIBARA Youichi
Electrotechnical Laboratory
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Nakata Ken
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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MIZUTANI Wataru
Electrotechnical Laboratory
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Naohara Hideo
Fuel Cell System Development Division Toyota Motor Corporation
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Toshima N
Sci. Univ. Tokyo In Yamaguchi Yamaguchi
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Toshima N
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Toshima Naoki
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Horiuchi Shin
Nanoscientific Measurements Group Nanotechnology Research Institute National Institute Of Advanced I
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Kajita Masashi
Department Of Materials Science And Engineering Science University Of Tokyo In Yamaguchi
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ADISASMITO Sanggono
Department of Applied Chemistry, School of Engineering, The University of Tokyo
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GOTOH Yaeko
Department of Applied Chemistry, Faculty of Engineering, The University of Tokyo
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ISHIWATARI Mariko
Department of Applied Chemistry, Faculty of Engineering, The University of Tokyo
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Gotoh Y
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Matsushita Toru
Graduate School Of Science And Engineering Tokyo University Of Science
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Kojima Shin-ichi
Department Of Electronic Engineering Graduate School Of Engineering Osaksa University
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Kojima Shin-ichi
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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TANISHIMA Satoshi
Department of Industrial Chemistry, Faculty of Engineering, the University of Tokyo
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OHNO Kousuke
Department of Industrial Chemistry, Faculty of Engineering, the University of Tokyo
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Toshima N
Tokyo Univ. Sci. Yamaguchi
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Toshima Naoki
Department Of Materials Science And Engineering Science University Of Tokyo
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TASHIRO Shigetoshi
Department of Materials Science and Engineering, Science University of Tokyo
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OHSUKA Harunobu
Department of Industrial Chemistry, Faculty of Engineering, Science University of Tokyo
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KAWAMURA Tokiji
Department of Applied Chemistry, Faculty of Engineering, The University of Tokyo
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HIRAI Hidefumi
Department of Industrial Chemistry, Faculty of Engineering, Science University of Tokyo
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Ohno Kousuke
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo
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Hirai H
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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TOKONAMI Shiho
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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KINJO Mutsuko
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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Tanishima Satoshi
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo
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Tashiro Shigetoshi
Department Of Materials Science And Engineering Science University Of Tokyo
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Wang Yuan
Department Of Animal Resource & Science Dankook University
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Toshima Naoki
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Toshima Naoki
Department Of Materials Science And Engineering Science University Of Tokyo In Yamaguchi
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Tomita Hirofumi
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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Kawamura Tokiji
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Ohsuka Harunobu
Department Of Industrial Chemistry Faculty Of Engineering Science University Of Tokyo
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Jiang Hui
Department Of Hepato-bilio-pancreatology Surgery West China Hospital Sichuan University
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Jiang Hui
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Kinjo Mutsuko
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Tokonami Shiho
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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HIRAKAWA Kazutaka
Department of Applied Chemistry, School of Engineering, The University of Tokyo
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Komiyama Makoto
Department Of Chemistry And Biotechnology Faculty Of Engineering The University Of Tokyo
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LIU Hanfan
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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Yamaguchi Kazuaki
Department Of Electrical And Electronics Engineering Kobe University
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Teranishi T
School Of Materials Science Japan Advanced Institute Of Science And Technology
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Teranishi Toshiharu
School Of Materials Science Japan Advanced Institute Of Science And Technology
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NISHIDA Naoto
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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ICHIKAWA Shoko
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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Nishida Naoto
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Ichikawa Shoko
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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DU Xueyan
State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of Technology
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DU Yukou
Department of Materials Science and Environmental Engineering, Tokyo University of Science
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Wang Yuan
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo
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Fujisato Junichi
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Ishiwatari Mariko
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Du Yukou
Department Of Materials Science And Environmental Engineering Tokyo University Of Science
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Du Xueyan
State Key Laboratory Of Gansu Advanced Non-ferrous Metal Materials Lanzhou University Of Technology
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Hirakawa Kazutaka
Radioisotope Center Faculty Of Medicine Mie University
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Hirakawa Kazutaka
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Okamoto Yasuaki
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Naohara Hideo
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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YOSHIMOTO Takahiro
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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Yoshimoto Takahiro
Department Of Applied Chemistry Tokyo University Of Science Yamaguchi
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Tomita Hirofumi
Department Of Cardiology Hirosaki University Graduate School Of Medicine
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Liu Hanfan
Department Of Industrial Chemistry Faculty Of Engineering The University Of Tokyo
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Ishida Tomoko
Department Of Biological Sciences Graduate School Of Science The University Of Tokyo
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KAWASHIMA Keisuke
Department of Applied Chemistry, Tokyo University of Science Yamaguchi
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KOJIMA Shin-ichi
Department of Chemistry, Faculty of Science and Technology, Keio University
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Ohtaki Michitaka
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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Yamaguchi Kazuaki
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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Asanuma Hiroyuki
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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Lin Ru-Jang
Department of Industrial Chemistry, Faculty of Engineering, The University of Tokyo
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Saeki Masaru
Department of Industrial Chemistry, Faculty of Engineering The University of Tokyo
著作論文
- Poly (1-n-octadecylpyrrole) Films with'Needle'-like Morphology
- Novel Synthesis, Characterization, and Physical Properties of Self-Doped Sulfonated Polyaniline by Copolymerization between p-Aminodiphenylamine and o-Aminobenzenesulfonic Acid
- Novel Synthesis of Polyaniline Using Iron(III) Catalyst and Ozone
- Low Thermal Conductivities of Undoped and Various Protonic Acid-Doped Polyaniline Films
- Chemical Preparation of Polyanikine and Its Derivatives by Using Cerium(IV) Sulfate. Novel Preparation of Polyxylidines
- Thermoelectric Properties of Alternativel Layered Films of Polyaniline and (±)-10-Camphorsulfonic Acid-Doped Polyaniline
- Novel Syntheses of Poly(o-aminobenzoic acid) and Copolymers of o-Aminobenzoic Acid and Aniline as Potential Candidates for Precursor of Polyaniline
- Promotion Effect of Polymer-Immobilized Neodymium Ions on Catalytic Activity of Ultrafine Palladium Particles
- Self-Formation and Anisotropic Electrical Conduction of Polypyrrole-Microtubes
- Navel Preparation of Polyaniline Film from Poly(anthranilic acid) as a Precursor
- Synthesis and Catalysis of Polymer-Protected Pd/Ag/Rh Trimetallic Nanoparticles with a Core-Shell Structure
- Preparation of Protected Nanoparticles of Bismuth Telluride by Laser Ablation in Solution
- Preparation and Characterization of Nanomaterials of Tellurium, Bismuth, and Bismuth Telluride
- Synthesis and Catalysis of Colloidal Dispersions of Pd/Ni Bimetallic Clusters
- Measurements of Copper Phthalocyanine Ultrathin Films by Scanning Tunneling Microscopy and Spectroscopy
- One-Step Synthesis of Terephthalic Acid from Benzene in Water Using Cyclodestrin as Catalyst
- Selective Carboxylation of Benzoic Acid Using Cyclodextrin as Mediator
- Fabrication of SmCo_5 Alloy Magnetic Nanoparticles by Assistance of Copper and Their Magnetic Properties
- Asymmetric Thin Film of Poly(p-phenylene) Prepared by Vacuum Deposition
- Electrochromism of Single Transition-Metal Phtalocyanine Thin Films: Effect of Central Metal and Composite Structure
- Summarized Review of Pattern Dynamics up to Present, Making Clear Collectively 36 Creative Concepts Underlying, and Expecting Further Extension to More Difficult Problems Connected with Life
- Pattern Dynamics. Macrodynamical Approach to Nonlinear Problems IncludingLife, Mind, Thoughts, etc. Part V. Pattern-dynamical Mechanism for "What Are Thinking, Mind and Consciousness". Establishment Mental Biology
- Reversible Electrochromism of Copper Phthalocyanine Thin Film
- Reversible Electrochromism in the Thin Films of Single-Transition Metal Phthalocyanines
- Polymer-Protected Bimetallic Nanocluster Catalysts Having Core/Shell Structure for Accelerated Electron Transfer in Visible-Light-Induced Hydrogen Generation
- Novel Preparation, Characterization and Catalytic Properties of Polymer-Protected Cu/Pd Bimetallic Colloid
- Preparation of Organosol of Noble Metal Clusters with Novel Method
- Catalysis of Polymer-Protected Ni/Pd Bimetallic Nano-Clusters for Hydrogenation of Nitrobenzene Derivatives
- Low Driving Voltage of a Liquid Crystal Device Fabricated from 4'-Pentyl-4-biphenylcarbonitrile Doped with Environmentally Friendly ZnO Nanoparticles
- Simple and Environmentally Compatible One-pot Synthesis of Au Nanoparticles from Bulk : Separation of Au, Ag, and Cu in Water
- Silver-induced Enhancement of Magnetic Properties of CoPt_3 Nanoparticles
- Low Driving Voltage of Twisted Nematic Liquid Crystal Displays Doped with CdS Nanoparticles
- One-pot Simultaneous Synthesis of Au-Pt Core-Shell Nanoparticles Protected by a Nafion^【○!R】 Ionomer in an Aqueous Solution
- Ag/Rh Bimetallic Nanoparticles Formed by Self-assembly from Ag and Rh Monometallic Nanoparticles in Solution
- Metal Nanoparticle Catalysts for Oxidation of Propene with Molecular Oxygen
- The removal of nitrogen monoxide by the dry iron(II) complex immobilized on chelate resin. The preparation and characterization of the complex.
- The adsorption and desorption of nitrogen oxide by the aqueous dispersion of the chelate resin-immobilized iron(II) complex.
- Covalent immobilization of ultrafine platinum particles onto crosslinked polymer support and their application to catalysis.
- Spectroelectrochemistry of new prussian blue films prepared by a cast method.
- Photoreduction and Photoaddition of N-Acetyldiphenylmethyleneamine in Alkylbenzenes
- Photoaddition reaction of N-acetyldiphenylmethyleneamine with cyclic and acyclic olefins. An example of heavy atom effect in photoreaction.
- Photochemical Deuteration of ortho-Substituted N-(Diphenylmethylene)acetamides