Muto Yoneichiro | Department Of Chemistry Faculty Of Science And Engineering Saga University
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関連著者
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Muto Yoneichiro
Department Of Chemistry Faculty Of Science And Engineering Saga University
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Tokii Tadashi
Department Of Chemistry And Applied Chemistry Facukty Of Science And Engineering Saga University
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Emori Shuji
Department Of Chemistry And Applied Chemistry Faculty Of Science And Engineering Saga University
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KATO Michinobu
Aichi Prefectual University
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Nakashima Michio
Department Of Chemistry Faculty Of Science And Engineering Saga University
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MUTO Yoneichiro
Department of Chemistry, Faculty of Science and Engineering, Saga University
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TOKII Tadashi
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Suzuki Ikuo
Department Of Applied Physics Faculty Of Engineering Nagoya University
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Steward Omar
Department Of Chemistry And Biochemistry Duquesne University
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OHBA SHIGERU
Deparment of Biology, Faculty of Science, Tokyo Metropolitan University
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Jonassen Hans
Department of Chemistry, Tulane University
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SUZUKI Ikuo
Department of Electronics,Nagoya Institute of Technology
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Tokii T
Saga Univ. Saga
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Tokii Tadashi
Department Of Chemistry Faculty Of Science And Englneering Saga University
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NAKASHIMA Michio
Department of Chemistry, Faculty of Science and Engineering, Saga University
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OHBA Shigeru
Department of Chemistry, Keio University
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STEWARD Omar
Department of Chemistry and Biochemistry, Duquesne University
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Ohba Shigeru
Department Of Applied Physics Nagoya University:the Institute For Solid State Physics The University
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Ohba Shigeru
Department Of Chemistry Faculty Of Science And Technology Keio Univerisity
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Masayuki Koikawa
Department Of Chemistry And Applied Chemistry Faculty Of Science And Engineering Saga University
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Ohba S
Keio Univ. Yokohama
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Nakashima M
Department Of Chemistry Faculty Of Science And Engineering Saga University
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Mikuriya Masahiro
Department Of Chemistry And Open Research Center For Coordination Molecule-based Devices School Of S
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Suzuki Ikuo
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Kida Sigeo
Department of Chemistry Wakayama University
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Suzuki Ikuo
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Imai Kyoko
Aichi Prefectural University
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Kurihara Hikari
Department of Chemistry, Faculty of Science and Engineering, Saga University
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UEKUSA Hidehiro
Department of Chemistry, Tokyo Institute of Technology
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HORIE Hiroshi
Department of Pathology, Chiba Children's Hospital
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Okawa Hisashi
Department Of Chemistry Faculty Of Science Kyushu University
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Uekusa Hidehiro
Department Of Chemistry Faculty Of Science And Technology Keio University
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Uekusa Hidehiro
Department Of Chemistry And Material Science Tokyo Institute Of Technology
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Sasaki Ayako
Department Of Biofunctional Science Faculty Of Agriculture And Life Science Hirosaki University
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KOIKAWA Masayuki
Department of Chemistry, Faculty of Science and Enginnering, Saga University
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Koikawa Masayuki
Department Of Chemistry And Applied Chemistry Faculty Of Science And Engineering Saga University
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HUSEBYE Steinar
Department of Chemistry, University of Bergen
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Husebye Steinar
Department Of Chemistry University Of Bergen
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Chang Shih-chi
Department Of Electronic Engineering St. John's University
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EMORI Shuji
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Horie Hiroshi
Department Of Chemistry Faculty Of Science And Engineering Saga University
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Nonaka Hiroki
Department Of Neurosurgery Graduate School Of Medical Sciences Kyushu University
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Saito Yoshihiko
Department Of Cardiology Juntendo University School Of Medicine
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Kaneko Makoto
Department Of Artificial Complex Systems Engineering Graduate School Of Engineering Hiroshima Univer
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Noguchi Toshihiko
Department Of Electrical And Electronic Engineering Shizuoka University
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Hirashima Nobuchika
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Watanabe Naofumi
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Morooka Mitsuo
Department of Chemistry, Faculty of Science and Technology, Keio University
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Taura Toshiaki
Department of Chemistry, Faculty of Science, Hiroshima University
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Muto Yoneichiro
Department of Chemistry, Faculty of Science and Egineering, Saga University
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Muto Yoneichiro
Department of Chemistry, Saga University
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Morishita Nobuhide
Department of Chemistry, Faculty of Science and Egineering, Saga University
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Tohyama Yayoi
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Nakashima Michio
Research Institute for Diseases of the Chest, Faculty of Medicine, Kyushu University
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Muto Yoneichiro
Department of Chemistry, Faculty of Science and Enginerring, Saga University
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Ikeda Toyoaki
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Ohishi Katsuko
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Ikeda Noriyasu
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Sasaki Ayako
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Tokii Tadashi
Department of Chemistry, Saga University
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Tenhiro Toshihiko
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Kato Michinobu
Department of Chemistry, Aichi Prefectural University
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Sax Martin
Biocrystallography Laboratory, V A Medical Center
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Chang Chong-Hwan
Biocrystallography Laboratory, V A Medical Center
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Jury C.
Department of Chemistry and Physics, Duquesne University
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Pletcher James
Biocrystallography Laboratory, V A Medical Center
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Yoo Chung
Biocrystallography Laboratory, V A Medical Center
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Chang Shih-Chi
Department of Chemistry and Physics, Duquesne University
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Nonaka Hiroki
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Ueda Ikuhiko
College of General Education, Kyushu University 01
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Ueda Ikuhiko
Colledge of General Education, Kyushu University 01
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Kato Michinobu
Aichi Prefectural University
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Haramaki Nobuyuki
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Steward Omar
Department of Chemistry and Physics, Duquesne University
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Emori Shuji
Department of Chemistry, Faculty of Science and Engineering, Saga Univesity
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Okano Isamu
Department of Chemistry, Faculty of Science and Engineering, Saga Univesity
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Taura Toshiaki
Department of Chemistry, Aichi Prefectural University
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Masuo Hisayasu
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Kaneko Makoto
Department of Chemistry, Faculty of Science and Engineering, Saga University
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Yamanaka Kusuo
Department of Chemistry, Faculty of Science and Engineering, Saga University
著作論文
- Characterization of Dimeric Copper(II) Trichloroacetate Complexes by Electron Spin Resonance, Infrared, and Electronic Reflectance Spectra. Correlation of Spectral Parameters with Molecular Geometry
- Characterization of Dimeric (Carboxylato)copper(II) Complexes by Electron Spin Resonance Spectra. Correlation of ESR Parameters with Singlet-Triplet Energy Separations
- Structural, Magnetic, and Spectroscopic Characterization of the Pyridine Complexes of Copper(II) Triphenylacetate: A Dimeric Copper(II) Triphenylacetate-Pyridine Complex with Distorted Trigonal Bipyramidal Geometry Around Copper.
- Magnetic properties of dimeric copper(II) 2,2-dimethylpropanoate complexes.
- Structural, magnetic and spectroscopic characterization of novel di-.MU.-carboxylato-bridged binuclear copper(II) complexes with 1,10-phenanthroline.
- The magnetic properties of the ammonium chloride adducts of copper(II) fluoroacetate and copper(II) bromoacetate.
- The magnetic properties of the copper(II) (disubstituted acetate) adducts with ammonium chloride.
- Magnetic properties of dimeric copper(II) trichloroacetate adducts with 3-substituted pyridines.
- Two Modifications of Bi-Nuclear Copper(II) Chloride Complexes with N-Methylsalicylideneimine
- The magnetic properties of the copper(II) complexes with .OMEGA.-amino carboxylic acids.
- The magnetic properties of Cu(CH3COO)22NH4Cl and NH4Cu(HCOO)Cl2.
- Synthesis and magnetic susceptibility of dimeric copper(II) acetate adducts with triphenylphosphine or triphenylphosphine oxide.
- The magnetic properties of the copper(II) alkanoate adducts with benzimidazole and related nitrogen donors.
- The magnetic properties of copper(II) alkanoate adducts with pyridine and quinoline analogues.
- The magnetic properties of the copper(II) alkanoate adducts with cyclic ethers and tertiary amines.
- Dimeric copper(II) nitrato and chloro complexes with N-(3-dimethyl-aminopropyl)salicylideneaminato ligand protonated at the terminal nitrogen.
- Magnetic and spectral properties of dimeric copper(II) phenylpropynoate complexes.
- Magnetic and spectral properties of binuclear nickel(II) nitrato and acetato complexes of tridentate schiff bases derived from salicylaldehydes and N-substituted trimethylenediamines.
- The crystal structure and magnetic property of di-.MU.-propionato-O,O'-bis[N-p-tolylsalicylideneaminatocopper(II)].
- The magnetic properties of the ammonium chloride adducts of copper(II) chloroacetates.
- The Magnetic Susceptibility of Two Coupled Dimers Consisting of S=1/2 Spins
- Syntheses and magnetic properties of three modifications of dichloro[2-(hydroxymethyl)pyridine N-oxide]copper II.
- Binuclear Structure of Copper(II) 2-Pyridinolate Complex
- Magnetic properties of copper(II) complexes of phenylboronic acid.
- Spectral and Magnetic Studies on Bi- and Tri-Nuclear Complexes Derived from Copper(II) Complexes with Tetradentate Schiff Base and One of the Chlorides, Nitrates and Perchlorates of Copper(II), Nickel(II), Cobalt(II) and Zinc(II)
- Binuclear Metal Complexes. VII. Preparation and Properties of Binuclear Copper(II) and Nickel(II) Complexes of Hydrogen-bridged Macrocycles
- The 2:1 adduct of chloro[N-(2-dimethylaminoethyl)salicylideneaminato]copper(II) with chlorides of copper(II), manganese(II), and nickel(II).
- Structural, magnetic and IR spectroscopic characterization of dimeric copper(II) trichloroacetate adduct with benzonitrile. Nature of the copper(II)-bezonitrile bond.