Sakamoto Hidefumi | Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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概要
関連著者
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Sakamoto Hidefumi
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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SAKAMOTO Hidefumi
Department of Applied Chemistry, Faculty of Systems Engineering, Wakayama University
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Kimura Keiichi
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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KIMURA Keiichi
Department of Applied Chemistry, Faculty of Systems Engineering, Wakayama University
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OTOMO Makoto
Department of Applied Chemistry, Nagoya Institute of Technology
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Otomo Makoto
Department Of Applied Chemistry Nagoya Institute Of Technology
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木村 恵一
和歌山大学システム工学部
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ISHIKAWA Junichi
Department of Cardiology, Surugadai Nihon University Hospital, Tokyo
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Ishikawa Junichi
Department Of Applied Chemistry Nagoya Institute Of Technology
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坂本 英文
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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Sakamoto H
Wakayama Univ. Wakayama
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Kimura K
Wakayama Univ. Wakayama
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NAKAMURA Makoto
Department of Gastroenterology, Toyokawa City Hospital
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Doi Kunio
Department of Veterinary Pathology, Faculty of Agriculture, The University of Tokyo
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Doi Kunio
Department Of Applied Chemistry Nagoya Institute Of Technology
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坂本 英文
和歌山大学システム工学部精密物質学科
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Nakamura Makoto
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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YOKOYAMA Masaaki
Department of Agricultural Chemistry, Faculty of Agriculture, Kyushu University
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Yokoyama M
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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MIZUNO Tamao
Department of Applied Chemistry, Nagoya Institute of Technology
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Mizuno T
Department Of Applied Chemistry Nagoya Institute Of Technology
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Mizuno Tamao
Department Of Applied Chemistry Nagoya Institute Of Technology
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Nakayama Masaharu
Department Of Cardiovascular Medicine Tohoku University Graduate School Of Medicine
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TANAKA Kazuhiko
Department of Clinical Pharmacology & Pharmacokinetics, Osaka University of Pharmaceutical Sciences
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ITO Shigeki
Department of Fixed Prosthodontics, School of Dentistry, Iwate Medical University
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Tanaka Mutsuo
Osaka National Research Institute Aist Miti
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Tanaka Mutsuo
Osaka National Research Institute Aist
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MIZUTANI(UDA) Ryoko
Nara National College of Technology
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SUMIDA Miwa
Department of Material and Life Science, Graduate School of Engineering, Osaka University
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GOTO Hiroki
Department of Mechanical System Engineering, Gunma University
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Kimura Keiichi
Dep. Of Applied Chemistry Fac. Of Systems Engineering Wakayama Univ.
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TATSUMI Kenta
Department of Material and Life, School of Engineering, Osaka University
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YAJIMA Setsuko
Department of Applied Chemistry, Faculty of Systems Engineering, Wakayama University
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MIYAKE Saori
Department of Applied Chemistry, Faculty of Systems Engineering, Wakayama University
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OSUGA Hideji
Department of Chemistry, Graduate School of Science, Kyoto University
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ISHIDA Yasuyuki
Department of Applied Chemistry, Graduate School of Engineering, Nagoya University
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Shono Toshiyuki
Department Of Applied Chemistry Faculty Of Engineering Osaka Institute Of Technology
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Sohrin Yoshiki
Laboratory Of Hydrospheric Environment-analytical Chemistry Institute Of Chemical Research (icr)
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LIM Lee
Chemistry in the Faculty of Engineering, Gifu University
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WANG Qiuquan
Chemistry in the Department of Chemistry and the Key Laboratory of Analytical Sciences, Xiamen Unive
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Goto Hiroki
Department Of Applied Chemistry Nagoya Institute Of Technology
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Tanaka M
Department Of Chemistry Gradate School Of Engineering Science Osaka University
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Tanaka Kazuhiko
Department Of Cardiology Dokkyo Medical University Koshigaya Hospital
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Lim Lee
Chemistry In The Faculty Of Engineering Gifu University
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Ito Yasuaki
Department Of Civil And Earth Resources Engineering Kyoto University
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Ito Yasuaki
Department Of Applied Chemistry Nagoya Institute Of Technology
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Sumida Miwa
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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Wang Qiuquan
Chemistry In The Department Of Chemistry And The Key Laboratory Of Analytical Sciences Xiamen Univer
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Miyake Saori
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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Osuga Hideji
Department Of Material Science And Chemistry Faculty Of Systems Engineering Wakayama University
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Tatsumi K
Nagoya Univ. Nagoya
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Yajima S
Wakayama Univ. Wakayama Jpn
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Yajima Setsuko
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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Nakayama Masaharu
Department Of Materials Chemistry At Graduate School Of Science And Technology Yamaguchi University
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Nakayama Masaharu
Department Of Applied Chemistry Faculty Of Engineering Yamaguchi University
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Sakamoto Hidefumi
Department Of Applied Chemistry Nagoya Institute Of Technology
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Sakamoto Hidefumi
Department Of Material Science And Chemistry Faculty Of Systems Engineering Wakayama University
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NISHIDE Yosuke
Department of Material Science and Chemistry, Faculty of Systems Engineering, Wakayama University
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IWATA Kunihiro
Department of Material Science and Chemistry, Faculty of Systems Engineering, Wakayama University
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Iwata Kunihiro
Department Of Material Science And Chemistry Faculty Of Systems Engineering Wakayama University
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Nishide Yosuke
Department Of Material Science And Chemistry Faculty Of Systems Engineering Wakayama University
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Ito Shigeki
Department Of Applied Chemistry Nagoya Institute Of Technology
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Nakahara Yoshio
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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NAKAGAMI Hiroyuki
Department of Applied Chemistry, Nagoya Institute of Technology
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OGAWA Kazuyoshi
Department of Applied Chemistry, Nagoya Institute of Technology
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Nakagami Hiroyuki
Department Of Applied Chemistry Nagoya Institute Of Technology
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Ogawa Kazuyoshi
Department Of Applied Chemistry Nagoya Institute Of Technology
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MACHITANI Koji
Department of Applied Chemistry, Faculty of Systems Engineering, Wakayama University
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Machitani Koji
Department Of Applied Chemistry Faculty Of Systems Engineering Wakayama University
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Ishida Yasuyuki
Department Of Biological Chemistry College Of Bioscience And Biotechnology Chubu University
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Tanaka Kazuhiko
Department Of Material Science And Chemistry Faculty Of Systems Engineering Wakayama University
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Tanaka Minoru
Department Of Anatomy Kyoto Prefectural University Of Medicine
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Tanaka Kazuhiko
Department Mechanical Engineering Fukui Technology College
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Sakamoto Hidefumi
Department of Applied Chemistry, Faculty of Engineering, Osaka University
著作論文
- Photocontrollable Cation Extraction with Crowned Oligo(spirobenzopyran)s
- Molecular Design and Applications of Photochromic Crown Compounds : How Can We Manipulate Metal Ions Photochemically?
- Cation Complexation, Photochromism, and Aggregation of Copolymers carrying Crown Ether and Spirobenzopyran Moieties at the side Chains
- Calix [4] arene Derivative Bearing π-Coordinate Substituents as Neutral Carrier for Silver Ion Sensors
- ANALYTICAL SCIENCES EDITORIAL BOARD MEMBERS : BIOGRAPHIES
- Synthesis of Benzo[1,2-b:4,3-b']dithiophene/triphenylamine Copolymers : Effects of Substituents on Optical and EL Properties
- Solvent Extraction of Transition Metal Ions with Acyclic Polyethers Incorporating Several Heteroatoms and Bearing Heterocyclic Moieties as End Groups
- Lithium-Selective Coloration of Spirobenzopyran Derivative Incorporating Monoaza-12-Crown-4 in Micellar Solution
- Hydrazones Derived from Dithiamonoaza and Tetrathiamonoaza Analogs of Polyethers as Silver Ion Selective Ionophores: Syntheses, Proton-Dissociation Behaviors, and Metal Ion Complexing Properties in 1,4-Dioxane-Water Acidic Solution
- Silver Ion Selective Extraction with Dithiaza-, Tetrathiaza-, and Tetrathiadizacrown Ether Derivatives
- Silver Selectivity of Novel Monoazapolythioether Derivatives Bearing a Hydrazone Group in the Solvent Extraction
- Highly Selective Copper(II) Extraction with Oligoethylene Glycol Bis(hydrazone)s as Several Compositional Complexes
- Compositional Variation of Ionizable Crown Ether-Alkali Metal Ion Complexes in the Solvent Extraction Using Several Extraction Solvents
- Molecular Design of Tetraazamacrocyclic Derivatives Bearing a Spirobenzopyran and Three Carboxymethyl Moieties and Their Metal-Ion Complexing Behavior
- Selective lithium ion transport through hollow-fiber membrane containing easily-dissociable 14-crown-4 derivative.