Sekine Tatsuya | Departemnt of Chemistry, Science University of Tokyo
スポンサーリンク
概要
関連著者
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Sekine Tatsuya
Departemnt of Chemistry, Science University of Tokyo
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Sekine Tatsuya
Department Of Applied Chemistry Kanagawa Institute Of Technology
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SEKINE Tatsuya
Department of Chemistry, Science University of Tokyo
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HASEGAWA Yuko
Department of Bioresources Science, Faculty of Agriculture, Kochi University
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Kusakabe Satoshi
Departemnt of Chemistry, Science University of Tokyo
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Murai Ryokichi
Department Of Chemistry Science University Of Tokyo
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Iwahori Shigehisa
Department Of Chemistry Science University Of Tokyo
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KUSAKABE Satoshi
Department of Chemistry, Science University of Tokyo
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Kusakabe Satoshi
Department Of Chemistry Faculty Of Science Science University Of Tokyo
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NASU Akinobu
Department of Chemistry, Science University of Tokyo
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Nasu Akinobu
Department Of Chemistry Science University Of Tokyo
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Tanaka Ichiro
Department of Biology. Faculty of Science, Nagoya University
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Niitsu Masaru
Faculty Of Pharmaceutical Sciences Josai University
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Sekine Tatsuya
Department Of Chemistry Science University Of Tokyo
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SEKINE^[○!R] Tatsuya
Department of Chemistry, Science University of Tokyo
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MURAI Ryokichi
Department of Chemistry, Science University of Tokyo
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Saitou Takashi
Department Of Chemistry Science University Of Tokyo
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Takahashi Yoshihiro
Department Of Applied Physics Osaka City University
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Tanaka Ichiro
Department Of Biology Faculty Of Science Nagoya University
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Tanaka Ichiro
Department Of Chemistry Science University Of Tokyo
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Tosaka Teruyuki
Department of Chemistry, Science University of Tokyo
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Moriya Hiromitsu
Department of Chemistry, Science University of Tokyo
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Wakabayashi Hiroji
Department of Chemistry, Science University of Tokyo
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Komatsu Yu
Department of Chemistry, Science University of Tokyo
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SUGANUMA Shinya
Department of Medicine, Kidney Center, Tokyo Women's Medical University
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Suganuma Shinya
Department Of Chemistry Science University Of Tokyo
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SATOH Izumi
Department of Clinical Laboratory Medicine, Jichi Medical School
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Kato Koji
Department Of Hematology Aomori Prefectural Central Hospital
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TACHIMORI Shoichi
Department of Materials Science,Japan Atomic Energy Research Institute
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Takagi Hitoshi
Department Of Medicine And Molecular Science Gunma University Graduate School Of Medicine
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OHMIYA Yasunobu
Department of Chemistry, Science University of Tokyo
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Komatsu Yu
Department Of Environmental Chemistry College Of Environmental Engineering And Architecture Kanazawa
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TANAKA Ichiro
Advanced Science Research Center, Japan Atomic Energy Research Institute
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HOKURA Akiko
Department of Applied Chemistry, Tokyo University of Science
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YAMADA Meri
Department of Chemistry, Science University of Tokyo
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Kawashima Hiroshi
Department Of Agricultural Chemistry Faculty Of Agriculture Kyoto University:institute For Biomedica
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Tachimori Shoichi
Department Of Materials Science Japan Atomic Energy Research Institute
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Tachimori Shoichi
Department Of Fuel Cycle Safety Research Japan Atomic Energy Research Institute
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Yamada Meri
Department Of Chemistry Science University Of Tokyo
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Yamada Meri
Department Of Chemical Engineering University Of Melbourne
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Takagi Hitoshi
Department Of Internal Medicine And Molecular Science Graduate School Of Medicine Gunma University
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Satoh Izumi
Department Of Chemistry Science University Of Tokyo
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Hokura A
Department Of Applied Chemistry Graduate School Of Engineering Nagoya University
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Hokura Akiko
Department Of Applied Chemistry Faculty Of Science Tokyo University Of Science
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Inaba Kazuho
Department Of Chemistry Science University Of Tokyo
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Sekine T
Science Univ. Tokyo
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Kusakabe S
Sci. Univ. Tokyo Tokyo Jpn
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MASAKI Yasuko
Department of Chemistry, Science University of Tokyo
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SEKINE Tetsuya
Department of Chemistry, Faculty of Science, Science University of Tokyo
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HISHIKAWA Hiromi
Department of Chemistry, Faculty of Science, Science University of Tokyo
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Sekine Tetsuya
Department Of Chemistry Faculty Of Science Science University Of Tokyo
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Masaki Yasuko
Department Of Chemistry Science University Of Tokyo
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Honda Hiroshi
Department Of Agricultural Chemistry Tokyo University Of Agriculture
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Ohmiya Yasunobu
Department Of Chemistry Science University Of Tokyo
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SUZUKI Hideya
Department of Agricultural Chemistry, Faculty of Agriculture, Ibaraki University
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KATORI Miyoko
Department of Chemistry, Science University of Tokyo
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SAITOU Takashi
Department of Chemistry, Science University of Tokyo
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NAGANAWA Hirochika
Department of Materials Science, Japan Atomic Energy Research Institute
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Katori Miyoko
Department Of Chemistry Science University Of Tokyo
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Naganawa Hirochika
Department Of Materials Science Japan Atomic Energy Research Institute
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Naganawa Hirochika
Department Of Fuel Cycle Safety Research Japan Atomic Energy Research Institute
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Suzuki Hideya
Department Of Agricultural Chemistry Faculty Of Agriculture Ibaraki University
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Suzuki Hideya
Department Of Materials Science Japan Atomic Energy Research Institute
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Hishikawa Hiromi
Department Of Chemistry Faculty Of Science Science University Of Tokyo
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Kato K
Yamagata Univ. Yamagata
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Kato Koji
Department Of Applied Life Science Faculty Of Applied Biological Sciences Gifu University
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Takagi Hitoshi
Department Of 1st Internal Medicine Gunma University School Of Medicine
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Takagi Hitoshi
Department Of Chemistry Science University Of Tokyo
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Takahashi Kazuhiko
Department Of Applied Chemistry Tokyo Institute Of Technology
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Hishikura Hiromi
Department of Chemistry, Faculty of Science, Science University of Tokyo
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Sato Izumi
Department of Chemistry, Science University of Tokyo
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Ishii Teruhiko
Department of Chemistry, Science University of Tokyo
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Naganawa Hirochika
Department of Chemistry, Science University of Tokyo
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Kurakane Kiyoshi
Department of Chemistry, Science University of Tokyo
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Ihara Naohiko
Department of Chemistry, Science University of Tokyo
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Fukushima Toshio
Department of Chemistry, Science University of Tokyo
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Kurihara Shinji
Department of Chemistry, Science University of Tokyo
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Inaba Kazuho
Water and Soil Environment Division, National Institute for Environmental Studies
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Morimoto Tatsumu
Department of Chemistry, Science University of Tokyo
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Aikawa Hidehiko
Department of Chemistry, Science University of Tokyo
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Iga Hiroto
Department of Chemistry, Science University of Tokyo
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Masui Naohito
Department of Chemistry, Science University of Tokyo
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Kokiso Masakazu
Department of Chemistry, Science University of Tokyo
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Sakuma Manabu
Department of Chemistry, Science University of Tokyo
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Iritani Nobuhiko
Faculty of Pharmaceutical Sciences, Josai University
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KATO Koji
Department of Agricultural Chemistry, Faculty of Agriculture, Gifu University
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Takahashi Kazuhiko
Department of Chemistry, Science University of Tokyo
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Yumikura Jun-ichi
Department of Chemistry, Science University of Tokyo
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Koike Yasuaki
Department of Chemistry, Science University of Tokyo
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Tetsuka Toshihiro
Department of Chemistry, Science University of Tokyo
著作論文
- Solvent Extraction Equilibria and Kinetics of Gallium(III) with 2-Thenoyltrifluoroacetone in the Absence and Presence of Trioctylphosphine Oxide in Toluene
- SOLVENT EXTRACTION OF TERNARY METAL COMPLEXES WITH CATIONIC DYES AND CO-EXTRACTION OF LIGAND-DYE ION-PAIRS
- SOLVENT EXTRACTION OF MAGNESIUM(II) AND CALCIUM(II) WITH BENZOYLTRIFLUOROACETONE IN CARBON TETRACHLORIDE IN THE ABSENCE AND PRESENCE OF TETRAALKYL AMMONIUMS
- LIQUID-LIQUID PARTITION BEHAVIOR OF AMMONIA AND AMMONIUM ION BETWEEN HEXANE CONTAINING TRIOCTYLPHOSPHINE OXIDE AND AQUEOUS PERCHLORATE SOLUTIONS
- Solvent Extraction of Iron(II) and Iron(III) as Anionic Thiocyanate Complexes with Tetrabutylammonium Ions into Chloroform
- SOLVENT EXTRACTION EQUILIBRIA OF FIVE DIVALENT METAL IONS WITH DIBENZOYLMETHANE
- Effect of the Hydrophobic Anion of Picrate on the Extraction of Europium(III) with Diamide
- Solvent Extraction of Copper(I) and Copper(II) from Aqueous Halide Solutions with Tetrabutylammonium Ions into Chloroform
- SOLVENT EXTRACTION OF CADMIUM(II) FROM THIOCYANATE SOLUTIONS WITH METHYLISOBUTYLKETONE AND TRIOCTYLPHOSPHINE OXIDE IN HEXANE
- Rate and Equilibrium of the Distribution of 2-Thenoyltrifluoroacetone in Carbon Tetrachloride-Aqueous Perchlorate Solution Systems
- On the extractability of univalent cation as dibenzo-18-crown-6 complexes with picrate ion.
- Mutual and Acid Distribution in Methyl Isobutyl Ketone-Water System
- Distribution of Aqueous Sodium Perchlorate into Some Polar Organic Solvents
- The stability constants of nickel(II) complexes with chloride, thiocyanate, sulfate, thiosulfate, and oxalate ions, as determined by a solvent extraction method.
- Extraction of nickel(II) in aqueous thiocyanate-perchlorate solutions with trioctylphosphine oxide in hexane and with 4-methyl-2-pentanone.
- The formation and extraction equilibria of several manganese(II) .BETA.-diketonates and their trioctyl-phosphine oxide adducts.
- The Distribution of 2-Thenoyltrifluoroacetone between Several Organic Solvents and an Aqueous Solution and Its Extraction of Sodium (I) into Methyl Isobutyl Ketone
- Adduct formation of the mixed copper(II) 2-thenoyltrifluoroacetonate-3-isopropyltropolonate chelate with tributyl phosphate in solvent-extraction systems containing these ligands.
- Studies of the Alkaline Earth Complexes in Various Solutions. V. Calcium(II) and Strontium(II) Complexes with Carbonate Ions in 1M Sodium Chloride Media
- Rate of solvent extraction of chromium(III) with acetylacetone into carbon tetrachloride.
- Solvent extraction of iron(III) in concentrated nitric acid with several .BETA.-diketones.
- Extraction of lead(II) in aqueous thiocyanate-perchlorate solutions wtih trioctylphosphine oxide in hexane and with 4-methyl-2-pentanone.
- Studies on the solvent extraction of metal perchlorates III. Extraction equilibria of alkaline earth ions with trioctylphosphine oxide as perchlorate and thiocyanate.
- Association of .BETA.-diketones with trioctylphosphine oxide in solvent extraction systems.
- Solvent extraction equilibria of acids. VI. The extraction of several mono- and dicarboxylic acids with trioctylphosphine oxide in hexane.
- Solvent extraction equilibria of thallium(III) from weakly acidic chloride solutions into 4-methyl-2-pentanone.
- The Solvent Extraction of Zinc(II) in Sodium Perchlorate-halide Solutions with Trioctylphosphine Oxide
- Rate of ligand exchange of tris(acetylacetonato)iron(III) with 2-thenoyltrifluoroacetone in organic solvents.
- Solvent extraction equilibria of acids. VII. The co-extraction of water with strong mineral acids by trioctylphosphine oxide.
- A Study of Silver(I) Complexes with Some π-Donors and n-Donors in Chloroform by the Solvent Extraction Method
- Kinetic Studies of the Solvent Extraction of Metal Complexes. II. The Rate of the Extraction of Iron(III) with Thenoyltrifluoroacetone into Carbon Tetrachloride
- Kinetic Studies of the Solvent Extraction of Metal Complexes. I. The Extraction of the Beryllium(II)-TTA Chelate from Aqueous Perchlorate Media into Carbon Tetrachloride and Methyl Isobutyl Ketone
- Formation of Zinc(II) Complexes with Several Carboxylic Acids and Their Extraction with Carbon Tetrachloride
- The Solvent Extraction of Iron(III) in Perchlorate Solutions Containing Chloride or Bromide Ions with 2-Thenoyltrifluoroacetone and Trioctylphosphine Oxide
- The solvent extraction of thallium(I) as a dibenzo-18-crown-6 complex with the picrate ion.
- Studies on the solvent extraction of metal perchlorates. II. Extraction of alkali metal perchlorates with trioctylphosphine oxide.