Nonaka Tsutomu | Department Of Electric Chemistry Tokyo Institute Of Technology
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概要
関連著者
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Nonaka Tsutomu
Department Of Electric Chemistry Tokyo Institute Of Technology
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Fuchigami Toshio
Department Of Electronic Chemistry Tokyo Institute Of Technology
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NONAKA Tsutomu
Department of Electronic Chemistry, Tokyo Institute of Technology
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ATOBE Mahito
Department of Electronic Chemistry, Tokyo Institute of Technology
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Atobe Mahito
Department Of Electronic Chemistry Tokyo Institute Of Technology
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野中 勉
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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Yeh Mou-yung
Department Of Chemistry National Cheng Kung University
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Tien Hsien-ju
Department Of Chemistry National Cheng Kung University
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跡部 真人
Department of Electronic Chemistry, Tokyo Institute of Technology
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LI Wei
Department of Hematology, Affiliated Hospital of Academy of Military Medicine Science
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Li Wei
Department Of Chinese Material Medicine Chinese Material Medicine College Of Jilin Agricultural Univ
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跡部 真人
東京工業大学大学院総合理工学研究科
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野中 勉
Tsuruoka National College of Technology
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Sato Naotake
Department Of Electronic Chemistry Tokyo Institute Of Technology
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野中 勉
東京工業大学工学部
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Cheng Po-chung
Department Of Electronic Chemistry Graduate School At Nagatsuta Tokyo Institute Of Technology
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Goto Takushi
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Goto Takushi
Department of Electronic Chemistry, Graduate School at Nagatsuta Tokyo Institute of Technology
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Odo Keijiro
Department of Electrochemistry, Tokyo Institute of Technology
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SATO Naotake
Departments of Clinical Pathology Juntendo University School of Medicine
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KADO Yoshifumi
Department of Electronic Chemistry, Tokyo Institute of Technology
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ONO Yasushi
Department of immunology and Microbiology, Nihon University School of Medicine
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Chou Tse-chuan
Department Of Chemical Engineering College Of Engineering National Cheng Kung University
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Kado Y
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Nonaka Tsutomu
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Koizumi Toshio
Department Of Applied Chemistry The National Defense Academy
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NISHIKI Yoshinori
Research and Development Division, Permelec Electrode Ltd,
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Nishiki Yoshinori
Research And Development Division Permelec Electrode Ltd.
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Ono Yasushi
Department Of Immunology And Microbiology Nihon University School Of Medicine
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角 佳典
Department of Electronic Chemistry, Tokyo Institute of Technology
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佐藤 尚武
Department of Electronic Chemistry
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陳 伯彰
Department of Electronic Chemistry, Tokyo Institute of Technology
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Chen Ching-Sy
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Kandeel Zaghloul
Department of Chemistry, Faculty of Science, Cairo University
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Nonaka Tsutomu
Department of Electronic Chemistry, The Graduate School, Tokyo Institute of Technology
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Ota Tetsuro
Department of Electronic Chemistry, The Graduate School, Tokyo Institute of Technology
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Li Wei
Stevens Institute of Technology
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Chen P‐c
Tokyo Inst. Technol. Yokohama Jpn
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TIEN Hsien-Ju
Department of Chemistry, National Cheng Kung University
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MATSUDA Kazuya
Department of Applied Chemistry, School of Science and Engineering, Waseda University
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Matsuda Kazuya
Department Of Applied Chemistry School Of Science And Engineering Waseda University
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Higashiya Seiichiro
Department Of Electronic Chemistry Tokyo Institute Of Technology
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FUCHIGAMI Toshio
Department of Electronic Chemistry, Tokyo Institute of Technology
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SHINTANI Toshiro
Department of Electronic Chemistry, Tokyo Institute of Technology
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KONNO Akinori
Department of Electronic Chemistry, Tokyo Institute of Technology
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CHOU Tse-Chuan
Department of Chemical Engineering, National Cheng Kung University
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Matsuda Kazuya
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Ono Y
Univ. Tokyo Tokyo Jpn
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Sato N
Mitsubishi Chemical Corp. Ibaraki Jpn
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Konno Akinori
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Nonaka T
Tokyo Inst. Technol. Kanagawa Jpn
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Nonaka Tsutomu
Department Of Electronic Chemistry Graduate School At Nagatsuta Tokyo Institute Of Technology
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Nonaka Tsutomu
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Technology Tokyo
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Kim S‐h
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Technology Tokyo
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Li W
Tokyo Inst. Technol. Yokohama Jpn
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Chen Po-chung
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Chen Po-chang
Department Of Electronic And Computering Engineering Nan Jeon Institute Of Technology
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FUWA Seiji
Department of Electronic Chemistry, Tokyo Institute of Technology
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Nonaka Tsutomu
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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KODO Yoshifumi
Department of Electronic Chemistry, Tokyo Institute of Technology
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KABURAGI Takeshi
Department of Electronic Chemistry, Tokyo Institute of Technology
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Fuwa S
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Fuwa Seiji
Department Of Applied Chemistry And Biotechnology Faculty Of Engineering Fukui University
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ISHIWATA Toyoaki
Department of Electronic Chemistry, Tokyo Institute of Technology
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UMEZAWA Masanobu
R & D Laboratories, Nippon Carbon Co. Ltd.
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KIM Su-Hyun
Department of Electronic Chemistry, Interdisciplinary Graduate School of Science and Technology, Tok
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YASUDA Morihiro
Department of Material Science and Technology, Faculty of Engineering, Niigata University
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YOSHIYAMA Akiko
Department of Electric Chemistry, Tokyo Institute of Technology
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SEKIMOTO Masao
Research and Development Division, Permelec Electrode Ltd.
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Nonaka Tsutomu
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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Nonaka Tsutomu
Department Of Electronic Chemistry
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Takahashi Masahiko
Department Of Anesthesiology And Emergency Medicine Tohoku University Postgraduate Medical School
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Sekimoto Masao
Research And Development Division Permelec Electrode Ltd.
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Kodo Yoshifumi
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Yoshiyama Akiko
Department Of Electric Chemistry Tokyo Institute Of Technology
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Yasuda M
Niigata Univ. Niigata Jpn
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Yasuda Morihiro
Department Of Material Science And Technology Faculty Of Engineering Niigata University
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Kaburagi Takeshi
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Shintani Toshiro
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Umezawa Masanobu
R & D Laboratories Nippon Carbon Co. Ltd.
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Ishiwata Toyoaki
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Ono Yasushi
Department Of Material Science And Technology Faculty Of Engineering Niigata University
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Li Wei
Department Of Electronic Chemistry Tokyo Institute Of Technology
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Li Wei
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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ONO Yasushi
Department of Electronic Chemistry, Tokyo Institute of Technology
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不破 誠二
Department of Electronic Chemistry, Tokyo Institute of Technology
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小野 恭史
Department of Material Science and Technology, Faculty of Engineering, Niigata University
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金 洙玄
Department of Electronic Chemistry, Interdisciplinary Graduate School of Science and Technology, Tokyo Institute of Technology
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安田 守宏
Department of Material Science and Technology, Faculty of Engineering, Niigata University
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李 〔イ〕
Department of Electronic Chemistry, Interdisciplinary Graduate School of Science and Engineering, Tokyo Institute of Technology
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周 澤川
Department of Chemical Engineering, College of Engineering, National Cheng Kung University
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NONAKA Tsutomu
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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鏑木 武志
Department of Electronic Chemistry, Tokyo Institute of Technology
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Yeh Mou-Yung
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Tient Hsien-Ju
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Chou Jiun-Tzer
Department of Chemistry, National Cheng Kung University
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Hsu Ming-Ching
Department of Chemistry, National Cheng Kung University
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Kihara Shuta
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Baizer Manuel
Department of Chemistry, University of California
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Sato Norio
Department of Chemistry, Faculty of Science, Hokkaido University
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Kubo Koji
Department of Electrochemistry, Tokyo Institute of Technology
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Hashiba Shigeto
Department of Electronic Chemistry, Tokyo Institute of Technology
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Takiguchi Tsuyoshi
Department of Electronic Chemistry, Tokyo Institute of Technology
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SATO Naotake
Department of Electronic Chemistry
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Kandeel Zaghloul
Department of Electronic Chemistry, Tokyo Institute of Technology
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Yen Mou-Yung
Department of Chemistry, National Cheng Kung University
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Sekine Taro
Department of Electronic Chemistry, The Graduate School at Nagatsuta, Tokyo Institute of Technology
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SEKINE TARO
Department of Chemical Engineering, Niigata University
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Iwaoka Tomoyasu
Department of Electronic Chemistry, The Graduate School at Nagatsuta, Tokyo Institute of Technology
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Chou Tse-Chuan
Department of Chemical Engineering, National Cheng-Kung University
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Nonaka Tsutomu
Department of Electrochemistry, Tokyo Institute of Technology
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Abe Shigemitsu
Department of Electronic Chemistry, Graduate School at Nagatsuta, Tokyo Institute of Technology
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Asai Mitsuo
Department of Electronic Chemistry, Tokyo Institute of Technology
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Koizumi Toshio
Department of Electronic Chemistry, Tokyo Institute of Technology
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Takahashi Masahiko
Department of Electronic Chemistry, Tokyo Institute of Technology
著作論文
- Preparation of a Stable Self-assembled Thiol-modified Electrode Having Immobilized 2,2,6,6-Tetramethylpiperidinyl-1-oxyl (TEMPO) and Its Application to Electrocatalysis
- 有機電極反応における超音波効果(13)アニリンの電解酸化重合における超音波キャビテーションの役割
- 有機電極反応における超音波効果(5)超音波照射下における電解酸化重合による高密度ポリアニリン膜の形成
- 有機電極反応における超音波効果(12)TiO2光触媒による2-プロパノ-ルの酸化反応
- Ultrasonic Effects on Electroorganic Processes. Part 9. Current Efficiency and Product Selectivity in the Electroreduction of Alkyl Halides to Alkyl Stannanes at a Reactive Tin Cathode
- Paired Electrosynthesis of Di (2-carboxyethyl) sulfone
- 有機電解プロセスにおける超音波効果(18)トリアリルアミンレドックスメディエーターによるn-ブチルアミンの間接電解酸化における限界電流の検討
- 有機化合物のペアード・エレクトロシンセシス
- Electropolymerization of o-Mercaptoaniline Monolayer Self-assembled on an Au Electrode
- Ultrasonic Effects on Electroorganic Processes.^ Product-selectivity in Electroreduction of Benzaldehydes
- Frequency Effect of Ultrasound on Debromination of Stilbenedibromides with Zinc Powder
- Ultrasonic Effects on Electroorganic Processes. ^1 Cavitatioon Threshold Values of Ultrasound-oscillating Power
- 有機電極反応における超音波効果(11)超音波照射下におけるエマルジョン及びサスペンジョン電解
- Ultrasonic Effects on Electroorganic Processes.^1 Electroreduction of Benzaldehydes on Ultrasound-vibrating Electrodes
- エマルジョン電解における電解条件の影響--n-オクタノ-ル酸化〔英文〕
- Electrochemical Formation of Dimeric Organostannyl Compounds
- PTFE微粒子で複合めっきした疎水性白金電極上におけるカルボン酸塩のコルベ電解
- Cathodic Oxidation of Sulfoxides to Sulfones Using a Tungstate/Pertungstate Redox Mediator
- Kinetic Study of the Electroreduction of Benzoic Acid
- Electrolysis Using Composite Plated Electrodes. ^Preparation of a Binary Type Composite Plated Nickel Electrode with Poly(tetrafluoroethylene) and Silica Gel and Its Application in Electroreduction of Aldehydes
- Preparation of PTFE Composite-plated Hydrophobic β-PbO_2 Electrodes
- Paired Electrosynthesis of a Nitrone
- Fe3+/2+レッドクス応答におけるポリ(テトラフルオロアニリン)膜被覆電極の電気化学的活性〔英文〕
- Preparation of sydnone compounds substituted by thio and seleno functional groups at the 4-positions.
- Synthesis of sydnone compounds having alternating carbon-nitrogen chain and heterocyclic groups at the 4-position.
- Studies of cyanamide derivatives. Part 109. A convenient method for preparation of 4-aminothiazole compounds from alkoxythiocarbonylcyanamide salts.
- Studies on the synthesis of sydnone derivatives and their properties. XV. Synthesis of 4-sydnonylmethyl acetates.
- Synthesis of sydnone compounds substituted by heteroatom groups at the 4-positions.
- Synthesis of sydnone compounds having heterocyclic groups at the 4-positions from 4-(bromoacetyl)sydnones.
- Preparation of sydnone-4-carboxamide oximes and their conversion into 4-(1,2,4-oxadiazol-3-yl)sydnones.
- Electrochemical reduction of cyclic and acyclic sulfates.
- Mass Transfer and Product-Selectivity in Electroreduction of p-Methylbenzaldehyde.
- Electroorganic synthesis using organometals. 2. Reductive dehalogenation of halides with carbonylferrates derived from pentacarbonyliron(0) and cathodically-generated methoxide ion.
- Influence of Br- concentration on (Br)+-mediated indirect electrooxidation of alcohols to the corresponding carbonyl compounds.
- A facile synthesis of 2-acyl-3-amino-5-phenacylthio-4-phenylthiophenes from sodium cyanophenyldithioacetate and .ALPHA.-halo ketones.
- Anodic oxidation of (trimethylsilyl)methanes with .PI.-electron substituents in the presence of nucleophiles.
- Reaction mechanism of cathodic crossed coupling of acetone with unsaturated compounds in acidic solution.
- Electrochemical generation of unstable nitrogen species. 4. Electrochemical and chemical oxidation of cyclic and open-chain diamines. The formation of cyclic hydrazine derivatives.
- Prediction of Product-Selectivity in an Electroorganic Process by Mathematical Modeling of Reaction Mechanism. A Rotating Cylinder Electrode System.
- Cyanamide derivatives. XCIX. Electrolytic oxidation of cyanamide.
- Electro-organic reactions on organic electrodes. Part 2. Electrochemical asymmetric reduction of citraconic and mesaconic acids on optically-active poly(amino acid)-coated electrodes.
- Stereochemical studies of the electrolytic reactions of organic compounds. IV. Electrolytic reduction of optically-active 1-pyridylalkanols to the corresponding substituted-alkyl pyridines.
- N-halogen compounds of cyanamide derivatives. VII. The preparation and amidination of 5-ethoxy-.DELTA.4-1,2,4-thiadiazolines.
- Stereochemical studies of the electrolytic reactions of organic compounds. V. The electro-reductive cyclization of 1-acyl-8-benzoylnaphthalenes to 1,2-acenaphthenediols.
- Stereochemical studies of the electrolytic reactions of organic compounds. II. Electrolytic reduction of optically active 6-chloro-2,6-dimethyloctane to the corresponding alkane.
- Stereochemical studies of the electrolytic reactions of organic compounds. Part 18. Comparative study of hydrogenation on metal-black cathodes and catalysts.