Researcher Search Results Yoshio Umezawa Yoshio Umezawa (梅澤 喜夫) Please select the form format to download from below 「Education and research environment」format 「No. 4, the Ministry of Education document style ①Outline for Vitae」format 「No. 4, the Ministry of Education document style ②Education and research environment」format 「List of Teachers」format Profile Information AffiliationOthers, Research Institute of Pharmaceutical Sciences, Musashino UniversityDegree-J-GLOBAL ID200901096118618594researchmap Member ID1000013807 Research Interests 2 分析化学 Analytical Chemistry Research Areas 1 Nanotechnology/Materials / Analytical chemistry / Education 4 - 1972 The University of Tokyo - 1972 Graduate School, Division of Science, The University of Tokyo - 1967 Department of Chemistry, Faculty of Science, The University of Tokyo - 1967 Faculty of Science, The University of Tokyo Awards 3 2000 日本分析化学会学会賞 1979 日本分析化学会奨励賞 1973 電気化学協会進歩賞 Misc. 212 Immunoassay with Protein Pendant Liposomes and Ion-Selective Electrode. Anal. Sci., 2 523-527, 1986 Valence Levels of Ru((]G0002[)) and Os((]G0002[)) Complexes Studied by Voltammetry and X-ray Photoelectron Spectroscopy. J. Electroanal. Chem., 209(1) 135-150, 1986 Metal Oxides as Possible Faradaic Pseudo-Reference Electrodes Glen W. Hance, Theodore Kuwana, Yoshio Umezawa Analytical Sciences, 1(2) 141-144, 1985 Charge Separation at Water/Organic Interface Induced by Nonionic Surfactants Koichi Kojima, Masao Sugawara, Yoshio Umezawa Analytical Sciences, 1(5) 477-478, 1985 STUDY OF THE POTENTIAL RESPONSE OF SOLID-STATE CHLORIDE ELECTRODES AT LOW CONCENTRATION RANGES EG HARSANYI, K TOTH, E PUNGOR, Y UMEZAWA, S FUJIWARA TALANTA, 31(8) 579-584, 1984 Definition of the Response Time of Ion-Selective Electrodes and Potentiometric Cells. Anal. Chem., 56(4) 808-810, 1984 THIN-LAYER ION-SELECTIVE ELECTRODE DETECTION OF ANTICARDIOLIPIN ANTIBODIES IN SYPHILIS SEROLOGY Y UMEZAWA, S SOFUE, Y TAKAMOTO TALANTA, 31(5) 375-378, 1984 銅((]G0002[))イオン選択性電極の応答の解析. 電気化学(特集号), 51(1) 99-100, 1983 金属錯体薄膜電極上での光電荷分離におよぼす加電圧の効果. 梅澤 喜夫, 山村 剛士 日化(特集号), (6) 929-932, 1983 Single Ion Activity at High Ionic Strengths with Ion-Selective Electrodes and the Debye-Huckel Equation. Anal. Chem., 55(2) 386-388, 1983 Response Time in Electrochemical Cells Containing Ion-Selective Electrodes. Anal. Chem., 55 1432, 1983 難溶性固体膜銅((]G0002[))イオン選択性電極の検出下限. 電気化学(特集号), 50 109-110, 1982 グルコース酵素電極を用いるリポソーム抗原抗体電極. 電気化学(特集号), 50(1) 107-110, 1982 Visible Light Conversion at One-Dimensional Nickel Dithiolene Complex Electrode. J. Electrochem. Soc. U. S. A., 129(10) 2378-2380, 1982 Comparison of Various Definitions of Response Times for Cu((]G0002[)) Ion-Selective Electrodes. Anal. Chem., 54(7) 1198-1200, 1982 Photoelectrochemical Behaviour of Ruthenium((]G0002[)) Complex Layers at a Platinum Electrode Immobilized by the Common-Ion Effect in Aqueous Electrolyte Solution. J. Chem. Soc. Dalton Transactions, 1977-1980, 1982 Amperometric Detection of Glucose Released from Immune Lysis of Glucose Loaded Liposomes. Anal. Letts., 15(B2) 135-146, 1982 SEPARATION AND DETERMINATION OF BILE-ACIDS BY HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY USING IMMOBILIZED 3-ALPHA-HYDROXYSTEROID DEHYDROGENASE AND AN ELECTROCHEMICAL DETECTOR S KAMADA, M MAEDA, A TSUJI, Y UMEZAWA, T KURAHASHI JOURNAL OF CHROMATOGRAPHY, 239(APR) 773-783, 1982 イオン選択性電極の感度,正確さに及ぼす光効果. 梅澤 喜夫, 滝野 譲治, 今西 雄一郎, 浅野 泰一, 伊 東哲, 藤原 鎮男 日化(特集号), (1) 182-185, 1981 薄層ポテンシオメトリー. 梅澤 喜夫, 藤原 鎮男 日化(特集号), (10) 1437-1441, 1980 カルシウムイオン選択性電極のダイナミックキャリブレーションとメモリー効果. 梅澤 喜夫, 田先 功, 藤原 鎮男 日化(特集号), (10) 1641-1644, 1980 Plate-Shaped Silver/Silver Halide Reference Electrode for Determination of Fluoride Ion in Microliter Solution with Fluoride Ion Selective Electrode. Anal. Chem., 52(3) 596-598, 1980 Thin-Layer Potentiometric Analysis of Lipid Antigen-Antibody Reaction by Tetrapentylammonium(TRA+)Ion Loaded Liposomes and TPA+ Ion Selective Electrode. Anal. Chem., 52(11) 1610-1613, 1980 Liposome Immunoelectrode. Kunio Shiba, Tokuko Watanabe, Yoshio Umezawa, Shizuo Fujiwara, Hironao Momoi Chem. Letts., (2) 155-158, 1980 AN ELECTROCHEMICAL STUDY OF THE IRON STORAGE PROTEIN, FERRITIN N IMAI, Y UMEZAWA, Y ARATA, S FUJIWARA BIOCHIMICA ET BIOPHYSICA ACTA, 626(2) 501-506, 1980 Direct Atomization Atomic Absorption Spectrometry for Intact Biological Samples : Application to Trace Metal Analysis in Silkworm Eggs and Their Hatched Worms. Anal. Biochem., 94(2) 386-393, 1979 Derivatization of Platinum Electrodes by Photoactive Surface-Active Porphyrins. J. Electroanal. Chem., 95 113-116, 1979 Mn((]G0002[)) Porphyrin Electrode for a Possible Wet Solar Cell. J. Electrochem. Soc., 126(4) 705-707, 1979 Dynamic Calibration and Memory Effect for Fluoride Ion Selective Electrode. Yoshio Umezawa, Minoru Nagata, Katsuhiko Sawatari, Shizuo Fujiwara Bull. Chem. Soc. Jpn., 52(1) 241-242, 1979 Super High Sensitivity of CuSe-Ag2S Solid Membrane Copper((]G0002[)) Ion Selective Electrode in Several Metal Buffer Solutions. Bull. Chem. Soc. Jpn., 52(3) 945-946, 1979 Valence Levels of Ruthenium((]G0002[)) Complexes Studied by Cyclic Voltammetry and X-ray Photoelectron Spectroscopy. J. Electroanal. Chem., 102(1) 131-133, 1979 Electrode Reaction of Several Transition Metal Ions in Aqueous Polyelectrolyte Solutions as Studied by DC and Fourier Transform Polarography. Noboru Imai, Michio Hirota, Yoshio Umezawa, Shizuo Fujiwara Bull. Chem. Soc. Jpn., 52(1) 247-248, 1979 電圧-周波数変換器を用いるオンライン A/D 変換の精度向上. 猿渡 雄彦, 今西 雄一郎, 梅沢 喜夫, 藤原 鎮男 分析化学, 27(3) 180-183, 1978 Visible Light-Assisted Electrochemical Reduction of Oxygen at a Platinum Electrode Coated with Surface Active Cobalt((]G0002[)) and Manganese((]G0003[)) Porphyrins. J. Chem. Soc. Chem. Commm., 1106-1107, 1978 Transient Spectra due to Mercury Atoms in Aqueous Solution. Nature, 276(5683) 47-48, 1978 Effect of Argon Ion Bombardment on Metal Complexes and Oxides Studied by X-ray Photoelectron Spectroscopy. Anal. Chem., 50(9) 1290-1295, 1978 溶液中の原子吸収は観測可能か? 梅沢 喜夫, 藤原 祺多夫, 藤原 鎮男, 不破 敬一郎 分析化学, 26(6) 425-426, 1977 炭素炉原子吸光法による生体試料の前処理なし直接定量. 藤原 祺多夫, 梅沢 喜夫, 沼田 祐一, 不破 敬一郎, 藤原 鎮男 分析化学, 26(10) 735-737, 1977 Photoelectrochemical Study of Reversible Charge Separation in Hydrated Magnesium Porphyrin Aggregates. Takeshi Yamamura, Yoshio Umezawa Chem. Letts., (11) 1285-1288, 1977 磁気共鳴によるアパタイトの定性(]G0001[).吸着水のNMR. 梅沢 香代子, 平松 幹夫, 高井 信治, 山辺 武郎, 梅沢 喜夫, 西沢 佶, 千葉 盛人 分析化学(招待論文), 24(2) 79-83, 1975 Polarographic Study of Platinum((]G0002[)) Complexes in Aqueous Solution : Comparison with Pd((]G0002[)) Complexes. J. Inorg. Nucl. Chem., 37 573-575, 1975 Fourier Analysis of AC Polarography : Kinetic Parameters for Zn((]G0002[))-1N NaClO4 and KCl Systems. Bull. Chem. Soc. Jpn., 48 1053-1054, 1975 Classification of Polarographic Current-Potential Curves of Inorganic Anions as a Function of Reduction Potentials. Bull. Chem. Soc. Jpn., 47(5) 1181-1183, 1974 Polarographic Study of the Electron Transfer Reactions between Co((]G0003[))Complexes and N, N, N', N'-tetramethyl-p-phenylenediamine(TMPD)in Aqueous Solution. J. Inorg. Nucl. Chem., 36(11) 2535-2537, 1974 Computer-Assisted In-Phase AC Polarography : Determination of Cadmium((]G0002[))Ions. Bull. Chem. Soc. Jpn., 47(2) 499-500, 1974 Fourier Analysis of AC Polarography. Elimination of Non-Faradaic Effects and Determination of Kinetic Parameters for Cd((]G0002[))-Na2SO4 System. Bull. Chem. Soc. Jpn., 47 2486-2489, 1974 Proton Relaxation and Symmetry of Spin Functions in the AB2 System. Chem. Letts., 555-558, 1974 Enhancement of Polarographic Reduction Currents by a Static Magnetic Field. Talanta, 19 497-503, 1972 The Mechanism of"The Second Kind of Maxima"at the Rotated Dropping Mercury Electrode as Studied by Using Magnetic Field Effect. J. Electroanal. Chem., 34 243-244, 1972 The Reducibility and Polarography of Pd((]G0002[)) Complexes in Aqueous Solution. J. Inorg. Nucl. Chem., 33 2617-2621, 1971 «12345» Professional Memberships 10 日本内分泌撹乱化学物質学会(環境ホルモン学会) 日本生化学会 生物物理学会 電気分析化学会 アメリカ電気化学会 More Research Projects 4 分子探針と化学選択性STMの開発 生体系の非破壊分析法の開発;細胞情報の増強・抑制物質の分析法の開発,とくに生細胞内情報伝達の可視化プローブ開発 Non-destructive analysis of Inter-and Intracellular molecular mechanisms : methodology development Chemically Sensitive Interfaces and its Application to Chemical Sensing
Yoshio Umezawa (梅澤 喜夫) Please select the form format to download from below 「Education and research environment」format 「No. 4, the Ministry of Education document style ①Outline for Vitae」format 「No. 4, the Ministry of Education document style ②Education and research environment」format 「List of Teachers」format Profile Information AffiliationOthers, Research Institute of Pharmaceutical Sciences, Musashino UniversityDegree-J-GLOBAL ID200901096118618594researchmap Member ID1000013807 Research Interests 2 分析化学 Analytical Chemistry Research Areas 1 Nanotechnology/Materials / Analytical chemistry / Education 4 - 1972 The University of Tokyo - 1972 Graduate School, Division of Science, The University of Tokyo - 1967 Department of Chemistry, Faculty of Science, The University of Tokyo - 1967 Faculty of Science, The University of Tokyo Awards 3 2000 日本分析化学会学会賞 1979 日本分析化学会奨励賞 1973 電気化学協会進歩賞 Misc. 212 Immunoassay with Protein Pendant Liposomes and Ion-Selective Electrode. Anal. Sci., 2 523-527, 1986 Valence Levels of Ru((]G0002[)) and Os((]G0002[)) Complexes Studied by Voltammetry and X-ray Photoelectron Spectroscopy. J. Electroanal. Chem., 209(1) 135-150, 1986 Metal Oxides as Possible Faradaic Pseudo-Reference Electrodes Glen W. Hance, Theodore Kuwana, Yoshio Umezawa Analytical Sciences, 1(2) 141-144, 1985 Charge Separation at Water/Organic Interface Induced by Nonionic Surfactants Koichi Kojima, Masao Sugawara, Yoshio Umezawa Analytical Sciences, 1(5) 477-478, 1985 STUDY OF THE POTENTIAL RESPONSE OF SOLID-STATE CHLORIDE ELECTRODES AT LOW CONCENTRATION RANGES EG HARSANYI, K TOTH, E PUNGOR, Y UMEZAWA, S FUJIWARA TALANTA, 31(8) 579-584, 1984 Definition of the Response Time of Ion-Selective Electrodes and Potentiometric Cells. Anal. Chem., 56(4) 808-810, 1984 THIN-LAYER ION-SELECTIVE ELECTRODE DETECTION OF ANTICARDIOLIPIN ANTIBODIES IN SYPHILIS SEROLOGY Y UMEZAWA, S SOFUE, Y TAKAMOTO TALANTA, 31(5) 375-378, 1984 銅((]G0002[))イオン選択性電極の応答の解析. 電気化学(特集号), 51(1) 99-100, 1983 金属錯体薄膜電極上での光電荷分離におよぼす加電圧の効果. 梅澤 喜夫, 山村 剛士 日化(特集号), (6) 929-932, 1983 Single Ion Activity at High Ionic Strengths with Ion-Selective Electrodes and the Debye-Huckel Equation. Anal. Chem., 55(2) 386-388, 1983 Response Time in Electrochemical Cells Containing Ion-Selective Electrodes. Anal. Chem., 55 1432, 1983 難溶性固体膜銅((]G0002[))イオン選択性電極の検出下限. 電気化学(特集号), 50 109-110, 1982 グルコース酵素電極を用いるリポソーム抗原抗体電極. 電気化学(特集号), 50(1) 107-110, 1982 Visible Light Conversion at One-Dimensional Nickel Dithiolene Complex Electrode. J. Electrochem. Soc. U. S. A., 129(10) 2378-2380, 1982 Comparison of Various Definitions of Response Times for Cu((]G0002[)) Ion-Selective Electrodes. Anal. Chem., 54(7) 1198-1200, 1982 Photoelectrochemical Behaviour of Ruthenium((]G0002[)) Complex Layers at a Platinum Electrode Immobilized by the Common-Ion Effect in Aqueous Electrolyte Solution. J. Chem. Soc. Dalton Transactions, 1977-1980, 1982 Amperometric Detection of Glucose Released from Immune Lysis of Glucose Loaded Liposomes. Anal. Letts., 15(B2) 135-146, 1982 SEPARATION AND DETERMINATION OF BILE-ACIDS BY HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY USING IMMOBILIZED 3-ALPHA-HYDROXYSTEROID DEHYDROGENASE AND AN ELECTROCHEMICAL DETECTOR S KAMADA, M MAEDA, A TSUJI, Y UMEZAWA, T KURAHASHI JOURNAL OF CHROMATOGRAPHY, 239(APR) 773-783, 1982 イオン選択性電極の感度,正確さに及ぼす光効果. 梅澤 喜夫, 滝野 譲治, 今西 雄一郎, 浅野 泰一, 伊 東哲, 藤原 鎮男 日化(特集号), (1) 182-185, 1981 薄層ポテンシオメトリー. 梅澤 喜夫, 藤原 鎮男 日化(特集号), (10) 1437-1441, 1980 カルシウムイオン選択性電極のダイナミックキャリブレーションとメモリー効果. 梅澤 喜夫, 田先 功, 藤原 鎮男 日化(特集号), (10) 1641-1644, 1980 Plate-Shaped Silver/Silver Halide Reference Electrode for Determination of Fluoride Ion in Microliter Solution with Fluoride Ion Selective Electrode. Anal. Chem., 52(3) 596-598, 1980 Thin-Layer Potentiometric Analysis of Lipid Antigen-Antibody Reaction by Tetrapentylammonium(TRA+)Ion Loaded Liposomes and TPA+ Ion Selective Electrode. Anal. Chem., 52(11) 1610-1613, 1980 Liposome Immunoelectrode. Kunio Shiba, Tokuko Watanabe, Yoshio Umezawa, Shizuo Fujiwara, Hironao Momoi Chem. Letts., (2) 155-158, 1980 AN ELECTROCHEMICAL STUDY OF THE IRON STORAGE PROTEIN, FERRITIN N IMAI, Y UMEZAWA, Y ARATA, S FUJIWARA BIOCHIMICA ET BIOPHYSICA ACTA, 626(2) 501-506, 1980 Direct Atomization Atomic Absorption Spectrometry for Intact Biological Samples : Application to Trace Metal Analysis in Silkworm Eggs and Their Hatched Worms. Anal. Biochem., 94(2) 386-393, 1979 Derivatization of Platinum Electrodes by Photoactive Surface-Active Porphyrins. J. Electroanal. Chem., 95 113-116, 1979 Mn((]G0002[)) Porphyrin Electrode for a Possible Wet Solar Cell. J. Electrochem. Soc., 126(4) 705-707, 1979 Dynamic Calibration and Memory Effect for Fluoride Ion Selective Electrode. Yoshio Umezawa, Minoru Nagata, Katsuhiko Sawatari, Shizuo Fujiwara Bull. Chem. Soc. Jpn., 52(1) 241-242, 1979 Super High Sensitivity of CuSe-Ag2S Solid Membrane Copper((]G0002[)) Ion Selective Electrode in Several Metal Buffer Solutions. Bull. Chem. Soc. Jpn., 52(3) 945-946, 1979 Valence Levels of Ruthenium((]G0002[)) Complexes Studied by Cyclic Voltammetry and X-ray Photoelectron Spectroscopy. J. Electroanal. Chem., 102(1) 131-133, 1979 Electrode Reaction of Several Transition Metal Ions in Aqueous Polyelectrolyte Solutions as Studied by DC and Fourier Transform Polarography. Noboru Imai, Michio Hirota, Yoshio Umezawa, Shizuo Fujiwara Bull. Chem. Soc. Jpn., 52(1) 247-248, 1979 電圧-周波数変換器を用いるオンライン A/D 変換の精度向上. 猿渡 雄彦, 今西 雄一郎, 梅沢 喜夫, 藤原 鎮男 分析化学, 27(3) 180-183, 1978 Visible Light-Assisted Electrochemical Reduction of Oxygen at a Platinum Electrode Coated with Surface Active Cobalt((]G0002[)) and Manganese((]G0003[)) Porphyrins. J. Chem. Soc. Chem. Commm., 1106-1107, 1978 Transient Spectra due to Mercury Atoms in Aqueous Solution. Nature, 276(5683) 47-48, 1978 Effect of Argon Ion Bombardment on Metal Complexes and Oxides Studied by X-ray Photoelectron Spectroscopy. Anal. Chem., 50(9) 1290-1295, 1978 溶液中の原子吸収は観測可能か? 梅沢 喜夫, 藤原 祺多夫, 藤原 鎮男, 不破 敬一郎 分析化学, 26(6) 425-426, 1977 炭素炉原子吸光法による生体試料の前処理なし直接定量. 藤原 祺多夫, 梅沢 喜夫, 沼田 祐一, 不破 敬一郎, 藤原 鎮男 分析化学, 26(10) 735-737, 1977 Photoelectrochemical Study of Reversible Charge Separation in Hydrated Magnesium Porphyrin Aggregates. Takeshi Yamamura, Yoshio Umezawa Chem. Letts., (11) 1285-1288, 1977 磁気共鳴によるアパタイトの定性(]G0001[).吸着水のNMR. 梅沢 香代子, 平松 幹夫, 高井 信治, 山辺 武郎, 梅沢 喜夫, 西沢 佶, 千葉 盛人 分析化学(招待論文), 24(2) 79-83, 1975 Polarographic Study of Platinum((]G0002[)) Complexes in Aqueous Solution : Comparison with Pd((]G0002[)) Complexes. J. Inorg. Nucl. Chem., 37 573-575, 1975 Fourier Analysis of AC Polarography : Kinetic Parameters for Zn((]G0002[))-1N NaClO4 and KCl Systems. Bull. Chem. Soc. Jpn., 48 1053-1054, 1975 Classification of Polarographic Current-Potential Curves of Inorganic Anions as a Function of Reduction Potentials. Bull. Chem. Soc. Jpn., 47(5) 1181-1183, 1974 Polarographic Study of the Electron Transfer Reactions between Co((]G0003[))Complexes and N, N, N', N'-tetramethyl-p-phenylenediamine(TMPD)in Aqueous Solution. J. Inorg. Nucl. Chem., 36(11) 2535-2537, 1974 Computer-Assisted In-Phase AC Polarography : Determination of Cadmium((]G0002[))Ions. Bull. Chem. Soc. Jpn., 47(2) 499-500, 1974 Fourier Analysis of AC Polarography. Elimination of Non-Faradaic Effects and Determination of Kinetic Parameters for Cd((]G0002[))-Na2SO4 System. Bull. Chem. Soc. Jpn., 47 2486-2489, 1974 Proton Relaxation and Symmetry of Spin Functions in the AB2 System. Chem. Letts., 555-558, 1974 Enhancement of Polarographic Reduction Currents by a Static Magnetic Field. Talanta, 19 497-503, 1972 The Mechanism of"The Second Kind of Maxima"at the Rotated Dropping Mercury Electrode as Studied by Using Magnetic Field Effect. J. Electroanal. Chem., 34 243-244, 1972 The Reducibility and Polarography of Pd((]G0002[)) Complexes in Aqueous Solution. J. Inorg. Nucl. Chem., 33 2617-2621, 1971 «12345» Professional Memberships 10 日本内分泌撹乱化学物質学会(環境ホルモン学会) 日本生化学会 生物物理学会 電気分析化学会 アメリカ電気化学会 More Research Projects 4 分子探針と化学選択性STMの開発 生体系の非破壊分析法の開発;細胞情報の増強・抑制物質の分析法の開発,とくに生細胞内情報伝達の可視化プローブ開発 Non-destructive analysis of Inter-and Intracellular molecular mechanisms : methodology development Chemically Sensitive Interfaces and its Application to Chemical Sensing