Revolution in the Form of Polymeric Adsorbents 1: Porous Hollow-Fiber Membranes and Porous Sheets
暂无分享,去创建一个
[1] Kyoichi Saito,et al. Preparation of Microvolume Anion-Exchange Cartridge for Inductively Coupled Plasma Mass Spectrometry-Based Determination of (237)Np Content in Spent Nuclear Fuel. , 2016, Analytical chemistry.
[2] D. Umeno,et al. 【Original Contribution】 Reduction of Buffer Volume Used in Regeneration ofAnion–Exchange Porous Hollow–Fiber Membrane by Site–ControlledIntroduction of Anion–Exchange Group into Graft Chain , 2014 .
[3] N. Simpson. Solid-Phase Extraction , 2013 .
[4] D. Umeno,et al. Immobilization of an Esterase Inhibitor on a Porous Hollow-Fiber Membrane by Radiation-Induced Graft Polymerization for Developing a Diagnostic Tool for Feline Kidney Diseases , 2013, Bioscience, biotechnology, and biochemistry.
[5] D. Umeno,et al. Dependence of protein binding capacity of dimethylamino-γ-butyric-acid (DMGABA)-immobilized porous membrane on composition of solvent used for DMGABA immobilization , 2013 .
[6] D. Umeno,et al. Crosslinked-Chelating Porous Sheet with High Dynamic Binding Capacity of Metal Ions , 2013 .
[7] D. Umeno,et al. Dependence of Lanthanide-Ion Binding Performance on HDEHP Concentration in HDEHP Impregnation to Porous Sheet , 2012 .
[8] D. Umeno,et al. Removal of Boron Using Nylon-Based Chelating Fibers , 2011 .
[9] D. Umeno,et al. Effect of Chelating Group Density of Crosslinked Graft Chain on Dynamic Binding Capacity for Metal Ions , 2011 .
[10] D. Umeno,et al. Modification of a hydrophobic-ligand-containing porous sheet using tri-n-octylphosphine oxide, and its adsorption/elution of bismuth ions , 2010 .
[11] D. Umeno,et al. Binding of Phosphotyrosine to Gallium-Ion-Immobilized Porous Hollow-Fiber Membrane , 2010 .
[12] D. Umeno,et al. Carboxybetaine–Group Immobilized onto Pore Surface Reduced Protein Adsorption to Porous Membrane , 2010 .
[13] D. Umeno,et al. Purification of His-Tagged Protein Using an Immobilized Nickel Affinity Porous Hollow-Fiber Membrane , 2009 .
[14] N. Shinohara,et al. Separation of U and Pu in spent nuclear fuel sample using anion-exchange-group-introduced porous polymer sheet for ICP-MS determination , 2008 .
[15] D. Umeno,et al. Protein Purification Using Immobilized Metal Affinity Porous Sheet , 2008 .
[16] D. Umeno,et al. High-performance collection of palladium ions in acidic media using nucleic-acid-base-immobilized porous hollow-fiber membranes , 2008 .
[17] Kyoichi Saito,et al. Impregnation of a Neutral Extractant to Hydrophobic/Hydrophilic Groups Introduced into the Polymer Chain Grafted onto a Porous Membrane , 2008 .
[18] D. Umeno,et al. High-throughput solid-phase extraction of metal ions using an iminodiacetate chelating porous disk prepared by graft polymerization. , 2007, Journal of chromatography. A.
[19] N. Shinohara,et al. Preparation of Extractant-impregnated Porous Sheets for High-speed Separation of Radionuclides , 2007 .
[20] N. Shinohara,et al. Rapid Separation of Actinides Using an Anion-exchange Polymer Chain Grafted onto a Porous Sheet , 2007 .
[21] D. Umeno,et al. Protein Binding Characteristics of Amphoteric Polymer Brushes Grafted onto Porous Hollow-Fiber Membrane , 2007 .
[22] Kyoichi Saito,et al. Recovery of p.t-CEtGeO Using Chelating Porous Membranes Prepared with Various Compositions of Dioxane/Water Solvent , 2007 .
[23] Kyoichi Saito,et al. Impregnation of an Acidic Extractant Cyanex 272 to the Alkylamino Group and Alkylthiol Group Introduced into the Polymer Chain Grafted onto a Porous Membrane , 2007 .
[24] E. Katayama,et al. Comparison of Gelsolin Purification Performance between Anion-exchange-graft-chain-containing Porous Membrane and Anion-exchange Bead-packed Bed , 2007 .
[25] Kyoichi Saito,et al. Effects of Aliquat 336 Concentration and Solvent Composition on Amount of Aliquat 336 Impregnated and Liquid Permeability of Aliquat 336-Impregnated Porous Hollow-Fiber Membrane , 2007 .
[26] D. Umeno,et al. Protein Binding to Amphoteric Polymer Brushes Grafted onto a Porous Hollow‐Fiber Membrane , 2007, Biotechnology progress (Print).
[27] Kyoichi Saito,et al. Preparation of Aliquat 336-impregnated porous membrane , 2006 .
[28] Kyoichi Saito,et al. Interaction Between an Acidic Extractant and an Octadecylamino Group Introduced into a Grafted Polymer Chain , 2005 .
[29] Kyoichi Saito,et al. Preparation of an extractant-impregnated porous membrane for the high-speed separation of a metal ion. , 2005, Journal of chromatography. A.
[30] Kyoichi Saito,et al. Introduction of taurine into polymer brush grafted onto porous hollow-fiber membrane , 2005 .
[31] Kyoichi Saito,et al. Selection of the alkylamino group introduced into the polymer chain grafted onto a porous membrane for the impregnation of an acidic extractant , 2005 .
[32] E. Katayama,et al. High-performance purification of gelsolin from plasma using anion-exchange porous hollow-fiber membrane. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[33] E. Katayama,et al. Affinity Elution of Gelsolin Adsorbed onto an Anion-Exchange Porous Membrane , 2005 .
[34] S. Tsuneda,et al. Structure of polyol–ligand-containing polymer brush on the porous membrane for antimony(III) binding , 2004 .
[35] Kyoichi Saito,et al. Skin‐layer formation on porous membrane by immobilized dextransucrase , 2004 .
[36] Kyoichi Saito,et al. Production of Tripeptide from Gelatin Using Collagenase‐Immobilized Porous Hollow‐Fiber Membrane , 2008, Biotechnology progress.
[37] S. Tsuneda,et al. High-speed recovery of antimony using chelating porous hollow-fiber membrane , 2003 .
[38] Satoshi Kobayashi,et al. Highly Multilayered Urease Decomposes Highly Concentrated Urea , 2003, Biotechnology progress.
[39] T. Funami,et al. Concentration of 17β-estradiol using an immunoaffinity porous hollow-fiber membrane , 2002 .
[40] Kyoichi Saito,et al. Optimization of reaction conditions in production of cycloisomaltooligosaccharides using enzyme immobilized in multilayers onto pore surface of porous hollow-fiber membranes , 2002 .
[41] Kyoichi Saito,et al. Convection-aided collection of metal ions using chelating porous flat-sheet membranes. , 2002, Journal of chromatography. A.
[42] M. Tamada,et al. Solvent effect on protein binding by polymer brush grafted onto porous membranes. , 2002, Journal of chromatography. A.
[43] Kyoichi Saito,et al. Conversion of dextran to cycloisomaltooligosaccharides using an enzyme-immobilized porous hollow-fiber membrane. , 2002, Journal of agricultural and food chemistry.
[44] Kyoichi Saito,et al. High-throughput hydrolysis of starch during permeation across α-amylase-immobilized porous hollow-fiber membranes , 2002 .
[45] Kyoichi Saito,et al. Preparation of Chelating Porous Membranes for the Recovery of Germanium and their Adsorption Characteristics , 2002 .
[46] Kyoichi Saito,et al. Effect of Alcohol Solvents for Glycidyl Methacrylate in Radiation-Induced Graft Polymerization on Performance of Cation-Exchange Porous Membranes. , 2002 .
[47] Kyoichi Saito,et al. Production of Cycloisomaltooligosaccharides from Dextran Using Enzyme Immobilized in Multilayers onto Porous Membranes , 2002, Biotechnology progress.
[48] T. Kawai. Immobilization of ascorbic acid oxydase in multilayers onto porous hollow-fiber membrane , 2001 .
[49] T. Sugo,et al. Comparison of L-tryptophan binding capacity of BSA captured by a polymer brush with that of BSA adsorbed onto a gel network. , 2001, Journal of chromatography. A.
[50] Kyoichi Saito,et al. High Conversion in Asymmetric Hydrolysis during Permeation through Enzyme‐Multilayered Porous Hollow‐Fiber Membranes , 2001, Biotechnology progress.
[51] Kyoichi Saito,et al. Purification of Docosahexaenoic Acid Ethyl Ester Using a Silver‐Ion‐Immobilized Porous Hollow‐Fiber Membrane Module , 2001, Biotechnology progress.
[52] T. Sugo,et al. High-speed recovery of germanium in a convection-aided mode using functional porous hollow-fiber membranes. , 2000, Journal of chromatography. A.
[53] Kyoichi Saito,et al. Extension and Shrinkage of Polymer Brush Grafted onto Porous Membrane Induced by Protein Binding , 2000 .
[54] Kyoichi Saito,et al. Multilayer Binding of Proteins to Polymer Chains Grafted onto Porous Hollow‐Fiber Membranes Containing Different Anion‐Exchange Groups , 2000, Biotechnology progress.
[55] Nobuyuki Sasagawa,et al. Ionic crosslinking of SO3H-group-containing graft chains helps to capture lysozyme in a permeation mode , 1999 .
[56] Kyoichi Saito,et al. Selective binding of docosahexaenoic acid ethyl ester to a silver-ion-loaded porous hollow-fiber membrane , 1999 .
[57] T. Sugo,et al. High resolution of DL-tryptophan at high flow rates using a bovine serum albumin-multilayered porous hollow-fiber membrane. , 1999, Analytical chemistry.
[58] Kyoichi Saito,et al. Binding of dl-tryptophan to BSA adsorbed in multilayers by polymer chains grafted onto a porous hollow-fiber membrane in a permeation mode , 1999 .
[59] T. Sugo,et al. Chiral separation of DL-tryptophan using porous membranes containing multilayered bovine serum albumin crosslinked with glutaraldehyde. , 1998, Journal of chromatography. A.
[60] Nobuyuki Sasagawa,et al. Adsorption Characteristics of Binary Proteins onto Anion-Exchange Porous Hollow-Fiber Membrane , 1998 .
[61] Y. Nozaki,et al. Behavior of rare earth elements in seawater at the ocean margin: a study along the slopes of the Sagami and Nankai troughs near Japan , 1998 .
[62] Kyoichi Saito,et al. Chiral Separation of DL-Tryptophan Using Bovine-Serum-Albumin-Multilayered Porous Hollow-Fiber Membrane. , 1998 .
[63] Kyoichi Saito,et al. Application of Crosslinked-Aminoacylase-Multilayered Membranes to Bioreactor. , 1998 .
[64] Kyoichi Saito,et al. Repeated use of a hydrophobic ligand-containing porous membrane for protein recovery , 1997 .
[65] Kyoichi Saito,et al. Module performance of anion-exchange porous hollow-fiber membranes for high-speed protein recovery , 1997 .
[66] Kyoichi Saito,et al. Selection of a precursor monomer for the introduction of affinity ligands onto a porous membrane by radiation-induced graft polymerization , 1997 .
[67] Kyoichi Saito,et al. Protein Adsorption and Elution Performances of Modules Consisting of Porous Anion-Exchange Hollow-Fiber Membranes. , 1997 .
[68] Kyoichi Saito,et al. Protein Adsorption and Elution Performances of Porous Hollow‐Fiber Membranes Containing Various Hydrophobic Ligands , 1997 .
[69] Kyoichi Saito,et al. Radiation-induced grafting of phenylalanine-containing monomer onto a porous membrane , 1996 .
[70] S. Tsuneda,et al. Ring-opening reaction of poly-GMA chain grafted onto a porous membrane , 1996 .
[71] Kyoichi Saito,et al. Comparison of protein adsorption by anion-exchange interaction onto porous hollow-fiber membrane and gel bead-packed bed , 1996 .
[72] Kyoichi Saito,et al. Control of phenyl-group site introduced on the graft chain for hydrophobic interaction chromatography , 1996 .
[73] Kyoichi Saito,et al. Binary metal-ion sorption during permeation through chelating porous membranes , 1996 .
[74] Kyoichi Saito,et al. Amino acid addition to epoxy-group-containing polymer chain grafted onto a porous membrane , 1996 .
[75] Kyoichi Saito,et al. Comparison of Two Convection‐Aided Protein Adsorption Methods Using Porous Membranes and Perfusion Beads , 1996 .
[76] S. Tsuneda,et al. Hydrodynamic Evaluation of Three-Dimensional Adsorption of Protein to a Polymer Chain Grafted onto a Porous Substrate , 1995 .
[77] Kyoichi Saito,et al. Preparation of a hydrophobic porous membrane containing phenyl groups and its protein adsorption performance , 1995 .
[78] S. Tsuneda,et al. Protein adsorption characteristics of porous and tentacle anion-exchange membrane prepared by radiation-induced graft polymerization , 1995 .
[79] S. Tsuneda,et al. Highly Efficient Enzyme Recovery Using a Porous Membrane with Immobilized Tentacle Polymer Chains , 1995, Bio/Technology.
[80] S. Tsuneda,et al. High-throughput processing of proteins using a porous and tentacle anion-exchange membrane , 1995 .
[81] Kyoichi Saito,et al. Collection of Palladium Using an Ethylenediamine-Immobilized Chelating Microporous Membrane. , 1995 .
[82] Kyoichi Saito,et al. High collection rate of Pd in hydrochloric acid medium using chelating microporous membrane , 1994 .
[83] K. Sekiguchi,et al. Uranium uptake during permeation of seawater through amidoxime-group-immobilized micropores , 1994 .
[84] S. Tsuneda,et al. Binding of Lysozyme onto a Cation‐Exchange Microporous Membrane Containing Tentacle‐Type Grafted Polymer Branches , 1994, Biotechnology progress.
[85] Kyoichi Saito,et al. Reduction of Nonselective Adsorption of Proteins by Hydrophilization of Microfiltration Membranes by Radiation‐Induced Grafting , 1994, Biotechnology progress.
[86] T. Sugo,et al. Comparison of BSA adsorption and Fe sorption to the diol group and tannin immobilized onto a microfiltration membrane , 1993 .
[87] Kyoichi Saito,et al. Ion Exchange of Lysozyme during Permeation across a Microporous Sulfopropyl‐Group‐Containing Hollow Fiber , 1993, Biotechnology progress.
[88] S. Tsuneda,et al. Preparation of microfiltration membranes containing anion-exchange groups , 1993 .
[89] Kyoichi Saito,et al. Sorption kinetics of cobalt in chelating porous membrane , 1992 .
[90] Kyoichi Saito,et al. Protein adsorption capacity of a porous phenylalanine-containing membrane based on a polyethylene matrix , 1991 .
[91] I. Ishigaki,et al. Adsorption and elution of bovine gamma-globulin using an affinity membrane containing hydrophobic amino acids as ligands. , 1991, Journal of chromatography.
[92] Kyoichi Saito,et al. Introduction of a high-density chelating group into a porous membrane without lowering the flux , 1991 .
[93] Kyoichi Saito,et al. Adsorption Characteristics of an Immobilized Metal Affinity Membrane , 1991, Biotechnology progress.
[94] S. Tsuneda,et al. Metal collection using chelating hollow fiber membrane , 1991 .
[95] Kyoichi Saito,et al. Water flux and protein adsorption of a hollow fiber modified with hydroxyl groups , 1991 .
[96] F. Regnier,et al. Flow-through particles for the high-performance liquid chromatographic separation of biomolecules: perfusion chromatography. , 1990, Journal of chromatography.
[97] Kazuhiko Ishihara,et al. Preparation of Phospholipid Polylners and Their Properties as Polymer Hydrogel Membranes , 1990, Polymer Journal.
[98] S. Zale,et al. Membrane-Based Affinity Technology for Commercial Scale Purifications , 1988, Bio/Technology.
[99] A. Martell,et al. Stability of Metal Chelates. I. Iminodiacetic and Iminodipropionic Acids , 1952 .