Polymeric materials as anion-exchange membranes for alkaline fuel cells
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[1] B. Améduri,et al. Random and block styrenic copolymers bearing both ammonium and fluorinated side-groups , 2011 .
[2] Huamin Zhang,et al. Poly(vinylidene fluoride) based anion conductive ionomer as a catalyst binder for application in anion exchange membrane fuel cell , 2011 .
[3] Yushan Yan,et al. Self-crosslinking for dimensionally stable and solvent-resistant quaternary phosphonium based hydroxide exchange membranes. , 2011, Chemical communications.
[4] Suobo Zhang,et al. Poly(arylene ether sulfone)s ionomers with pendant quaternary ammonium groups for alkaline anion exchange membranes: Preparation and stability issues , 2011 .
[5] O. Fichet,et al. (Semi-)Interpenetrating polymer networks as fuel cell membranes , 2011 .
[6] B. Améduri,et al. Chemical reactions of polymer crosslinking and post-crosslinking at room and medium temperature , 2011 .
[7] Martin S. Miller,et al. A review of polymer electrolyte membrane fuel cell stack testing , 2011 .
[8] Y. Elabd,et al. Block Copolymers for Fuel Cells , 2011 .
[9] B. Améduri,et al. Grafting polymerization of styrene onto alternating terpolymers based on chlorotrifluoroethylene, hexafluoropropylene, and vinyl ethers, and their modification into ionomers bearing ammonium side‐groups , 2010 .
[10] R. Slade,et al. Alkaline anion-exchange membranes for low-temperature fuel cell application , 2010 .
[11] Wei Li,et al. Synthesis and characterization of novel anion exchange membranes based on imidazolium-type ionic liquid for alkaline fuel cells , 2010 .
[12] Qiang Zhang,et al. A novel guanidinium grafted poly(aryl ether sulfone) for high-performance hydroxide exchange membranes. , 2010, Chemical communications.
[13] Mahendra Kumar,et al. Organic-inorganic hybrid alkaline membranes by epoxide ring opening for direct methanol fuel cell applications , 2010 .
[14] S. Rowshanzamir,et al. Review of the proton exchange membranes for fuel cell applications , 2010 .
[15] Paul F. Mutolo,et al. Solvent Processable Tetraalkylammonium-Functionalized Polyethylene for Use as an Alkaline Anion Exchange Membrane , 2010 .
[16] Benny D. Freeman,et al. Water Purification by Membranes: The Role of Polymer Science , 2010 .
[17] Rongrong Chen,et al. Developing a novel alkaline anion exchange membrane derived from poly(ether‐imide) for improved ionic conductivity , 2010 .
[18] S. Zaidi. Advanced Membrane Materials for Fuel Cell Applications , 2010 .
[19] T. Maiyalagan,et al. Components for PEM Fuel Cells: An Overview , 2010 .
[20] Chunwen Sun,et al. Cathode materials for solid oxide fuel cells: a review , 2010 .
[21] Biao Wang,et al. Effects of [Bmim]OH on structure and conductive properties of alkaline PVA/[Bmim]OH membranes , 2010 .
[22] L. Pratt,et al. Density Functional Theory Study of Degradation of Tetraalkylammonium Hydroxides , 2010 .
[23] B. Peppley,et al. Anion-exchange membranes composed of quaternized-chitosan derivatives for alkaline fuel cells , 2010 .
[24] Chunsheng Wang,et al. Quaternized poly(methyl methacrylate-co-butyl acrylate-co-vinylbenzyl chloride) membrane for alkaline fuel cells , 2010 .
[25] M. Mathe,et al. Characterization of an anionic-exchange membranes for direct methanol alkaline fuel cells , 2010 .
[26] Ermete Antolini,et al. Alkaline direct alcohol fuel cells , 2010 .
[27] T. Xu,et al. Novel silica/poly(2,6-dimethyl-1,4-phenylene oxide) hybrid anion-exchange membranes for alkaline fuel cells: Effect of silica content and the single cell performance , 2010 .
[28] Xiaolan Wei,et al. Novel anion exchange membrane based on copolymer of methyl methacrylate, vinylbenzyl chloride and ethyl acrylate for alkaline fuel cells , 2010 .
[29] Ribes Greus,et al. Alkaline Fuel Cells , 2010 .
[30] W. Jaeger,et al. Synthetic polymers with quaternary nitrogen atoms—Synthesis and structure of the most used type of cationic polyelectrolytes , 2010 .
[31] Junhua Wang,et al. Novel Hydroxide-Conducting Polyelectrolyte Composed of an Poly(arylene ether sulfone) Containing Pendant Quaternary Guanidinium Groups for Alkaline Fuel Cell Applications , 2010 .
[32] T. Zhao,et al. Poly (vinyl alcohol)/3-(trimethylammonium) propyl-functionalized silica hybrid membranes for alkaline direct ethanol fuel cells , 2010 .
[33] A. Zhu,et al. Anion exchange membranes based on quaternized polystyrene-block-poly(ethylene-ran-butylene)-block-polystyrene for direct methanol alkaline fuel cells , 2010 .
[34] D. Sangeetha,et al. A novel anion exchange membrane from polystyrene (ethylene butylene) polystyrene: Synthesis and characterization , 2010 .
[35] Paul F. Mutolo,et al. Tunable high performance cross-linked alkaline anion exchange membranes for fuel cell applications. , 2010, Journal of the American Chemical Society.
[36] H. Lv,et al. Alkali Doped Poly(vinyl alcohol) (PVA) for Anion-exchange Membrane Fuel Cells: Ionic Conductivity, Chemical Stability and FT-IR Characterizations , 2010 .
[37] F. Tietz,et al. Materials and manufacturing technologies for solid oxide fuel cells , 2010 .
[38] M. Koike,et al. Anion Conductive Aromatic Ionomers Containing Fluorenyl Groups , 2010 .
[39] Michael A. Hickner,et al. Anion Exchange Membranes by Bromination of Benzylmethyl-Containing Poly(sulfone)s , 2010 .
[40] Xiongwen Zhang,et al. A review of integration strategies for solid oxide fuel cells , 2010 .
[41] Jing Pan,et al. High‐Performance Alkaline Polymer Electrolyte for Fuel Cell Applications , 2010 .
[42] B. Améduri,et al. Synthesis and Modification of Alternating Copolymers Based on Vinyl Ethers, Chlorotrifluoroethylene, and Hexafluoropropylene† , 2009 .
[43] Junhua Wang,et al. Synthesis of Soluble Poly(arylene ether sulfone) Ionomers with Pendant Quaternary Ammonium Groups for Anion Exchange Membranes , 2009 .
[44] Q. Liu,et al. Quaternized cardo polyetherketone anion exchange membrane for direct methanol alkaline fuel cells , 2009 .
[45] B. Améduri. From vinylidene fluoride (VDF) to the applications of VDF-containing polymers and copolymers: recent developments and future trends. , 2009, Chemical reviews.
[46] Cy H. Fujimoto,et al. Synthesis and Characterization of Poly(phenylene)-Based Anion Exchange Membranes for Alkaline Fuel Cells , 2009 .
[47] Paul F. Mutolo,et al. A ring-opening metathesis polymerization route to alkaline anion exchange membranes: development of hydroxide-conducting thin films from an ammonium-functionalized monomer. , 2009, Journal of the American Chemical Society.
[48] Zhongwei Chen,et al. A soluble and highly conductive ionomer for high-performance hydroxide exchange membrane fuel cells. , 2009, Angewandte Chemie.
[49] T. Xu,et al. Novel silica/poly(2,6-dimethyl-1,4-phenylene oxide) hybrid anion-exchange membranes for alkaline fuel cells: Effect of heat treatment , 2009 .
[50] C. Bonnebat,et al. Formation and characterization of crosslinked membranes for alkaline fuel cells , 2009 .
[51] P. Kohl,et al. Anionic polysulfone ionomers and membranes containing fluorenyl groups for anionic fuel cells , 2009 .
[52] S. Roualdès,et al. Preparation of solid alkaline fuel cell binders based on fluorinated poly(diallyldimethylammonium chloride)s [poly(DADMAC)] or poly(chlorotrifluoroethylene‐co‐DADMAC) copolymers , 2009 .
[53] Rongrong Chen,et al. Preparation of a functional poly(ether imide) membrane for potential alkaline fuel cell applications: Chloromethylation , 2009 .
[54] A. D. Modestov,et al. MEA for alkaline direct ethanol fuel cell with alkali doped PBI membrane and non-platinum electrodes , 2009 .
[55] Tongwen Xu,et al. Novel anion-exchange organic–inorganic hybrid membranes prepared through sol–gel reaction of multi-alkoxy precursors , 2009 .
[56] M. R. Tarasevich,et al. Ethanol crossover through alkali-doped polybenzimidazole membrane , 2009 .
[57] A. Zhu,et al. Performance of organic-inorganic hybrid anion-exchange membranes for alkaline direct methanol fuel cells , 2009 .
[58] Rongrong Chen,et al. Preparation of alkaline anion exchange membranes based on functional poly(ether-imide) polymers for potential fuel cell applications , 2009 .
[59] Q. Xin,et al. Alkali doped polybenzimidazole membrane for alkaline direct methanol fuel cell , 2008 .
[60] Hongwei Zhang,et al. Alkaline Polymer Electrolyte Membranes from Quaternized Poly(phthalazinone ether ketone) for Direct Methanol Fuel Cell , 2008 .
[61] Brant A. Peppley,et al. Quaternized-chitosan membranes for possible applications in alkaline fuel cells , 2008 .
[62] Ching An Huang,et al. Study of poly(vinyl alcohol)/titanium oxide composite polymer membranes and their application on alkaline direct alcohol fuel cell , 2008 .
[63] Liang Wu,et al. Improving anion exchange membranes for DMAFCs by inter-crosslinking CPPO/BPPO blends , 2008 .
[64] F. Alloin,et al. Polyepichlorhydrin membranes for alkaline fuel cells: sorption and conduction properties. , 2008, The journal of physical chemistry. B.
[65] S. Frangini. Corrosion of metallic stack components in molten carbonates : Critical issues and recent findings , 2008 .
[66] Ronghuan He,et al. Alkali doped polybenzimidazole membrane for high performance alkaline direct ethanol fuel cell , 2008 .
[67] Huanting Wang,et al. Weak-base anion exchange membranes by amination of chlorinated polypropylene with polyethyleneimine at low temperatures , 2008 .
[68] Ching An Huang,et al. Preparation of a PVA/HAP composite polymer membrane for a direct ethanol fuel cell (DEFC) , 2008 .
[69] Q. Liu,et al. Preparation and characterization of cross-linked quaternized poly(vinyl alcohol) membranes for anion exchange membrane fuel cells , 2008 .
[70] Cy H. Fujimoto,et al. Transport Properties of Hydroxide and Proton Conducting Membranes , 2008 .
[71] L. Pratt,et al. Mechanism of Tetraalkylammonium Headgroup Degradation in Alkaline Fuel Cell Membranes , 2008 .
[72] T. Xu,et al. Free-standing anion-exchange PEO–SiO2 hybrid membranes , 2008 .
[73] F. Alloin,et al. Anionic membrane based on polyepichlorhydrin matrix for alkaline fuel cell: Synthesis, physical and electrochemical properties , 2007 .
[74] S. Holdcroft,et al. Considerations of macromolecular structure in the design of proton conducting polymer membranes: graft versus diblock polyelectrolytes. , 2007, Journal of the American Chemical Society.
[75] R. Slade,et al. Development of Cathode Architectures Customized for H2/O2 Metal-Cation-Free Alkaline Membrane Fuel Cells , 2007 .
[76] Koji Yamada,et al. A platinum-free zero-carbon-emission easy fuelling direct hydrazine fuel cell for vehicles. , 2007, Angewandte Chemie.
[77] C. Iojoiu,et al. Chemical and physicochemical characterizations of ionomers , 2006 .
[78] L. Zhuang,et al. Composite anion exchange membrane for alkaline direct methanol fuel cell: Structural and electrochemical characterization , 2006 .
[79] R. Slade,et al. An electron-beam-grafted ETFE alkaline anion-exchange membrane in metal-cation-free solid-state alkaline fuel cells , 2006 .
[80] G. Olah. Beyond oil and gas: the methanol economy. , 2006, Angewandte Chemie.
[81] R. Slade,et al. An alkaline polymer electrochemical interface: a breakthrough in application of alkaline anion-exchange membranes in fuel cells. , 2006, Chemical communications.
[82] B. Améduri,et al. Grafting of commercially available amines bearing aromatic rings onto poly(vinylidene-co-hexafluoropropene) copolymers , 2006 .
[83] R K Nagarale,et al. Recent developments on ion-exchange membranes and electro-membrane processes. , 2006, Advances in colloid and interface science.
[84] K. Kordesch,et al. Development of flat plate rechargeable alkaline manganese dioxide-zinc cells , 2006 .
[85] Manuel Maréchal,et al. From polymer chemistry to membrane elaboration: A global approach of fuel cell polymeric electrolytes , 2006 .
[86] T. Xu,et al. Synthesis and characterizations of novel, positively charged hybrid membranes from poly(2,6-dimethyl-1,4-phenylene oxide) , 2006 .
[87] K. Scott,et al. Application of sodium conducting membranes in direct methanol alkaline fuel cells , 2006 .
[88] Kazunori Yamada,et al. Adsorption and desorption properties of cationic polyethylene film gels to organic anions and their regeneration , 2006 .
[89] Chun–Chen Yang,et al. All solid-state electric double-layer capacitors based on alkaline polyvinyl alcohol polymer electrolytes , 2005 .
[90] Ashok Kumar,et al. Preparation of strong base anion exchange membrane using 60Co gamma radiation , 2005 .
[91] T. Xu. Ion exchange membranes: State of their development and perspective , 2005 .
[92] T. Abe,et al. Alkaline direct alcohol fuel cells using an anion exchange membrane , 2005 .
[93] Lei Li,et al. Quaternized polyethersulfone Cardo anion exchange membranes for direct methanol alkaline fuel cells , 2005 .
[94] Tongwen Xu,et al. Synthesis and characterizations of novel, positively charged poly(methyl acrylate)–SiO2 nanocomposites , 2005 .
[95] Xiaolong Xu,et al. Synthesis and characterizations of anion exchange organic inorganic hybrid materials based on poly(2,6-dimethyl-1,4-phenylene oxide) (PPO) , 2005 .
[96] L. Zhuang,et al. Synthesis and characterization of quaternized poly(4-vinylpyridine-co-styrene) membranes , 2005 .
[97] B. Améduri,et al. Functional fluoropolymers for fuel cell membranes , 2005 .
[98] R. Slade,et al. Prospects for Alkaline Anion‐Exchange Membranes in Low Temperature Fuel Cells , 2005 .
[99] R. Slade,et al. Investigations of conductivity in FEP-based radiation-grafted alkaline anion-exchange membranes , 2005 .
[100] Laurent Lebrun,et al. Elaboration of a new anion-exchange membrane with semi-interpenetrating polymer networks and characterisation , 2004 .
[101] Jung-Hoon Song,et al. Preparation and characterization of UV‐grafted ion‐exchange textiles in continuous electrodeionization , 2004 .
[102] R. Vargas,et al. Effect of water vapor on the ion transport in polymer films of PVOH/LiH2PO4/H2O , 2004 .
[103] D. Stamatialis,et al. Anion-exchange membranes containing diamines: preparation and stability in alkaline solution , 2004 .
[104] Keith Scott,et al. Development of direct methanol alkaline fuel cells using anion exchange membranes , 2004 .
[105] Robert B. Moore,et al. State of understanding of nafion. , 2004, Chemical reviews.
[106] G. Gohil,et al. Comparative studies on electrochemical characterization of homogeneous and heterogeneous type of ion-exchange membranes , 2004 .
[107] R. M. A. Hameed,et al. Nickel as a catalyst for the electro-oxidation of methanol in alkaline medium , 2004 .
[108] B. Améduri,et al. Well-Architectured Fluoropolymers: Synthesis, Properties and Applications , 2004 .
[109] M. Nasef,et al. Preparation and applications of ion exchange membranes by radiation-induced graft copolymerization of polar monomers onto non-polar films , 2004 .
[110] E. Avram,et al. Ion-exchange resins. III. Functionalization–morphology correlations in the synthesis of some macroporous, strong basic anion exchangers and uranium-sorption properties evaluation , 2004 .
[111] Mark A.J Cropper,et al. Fuel cells: a survey of current developments , 2004 .
[112] Emilio Sanchez-Cortezon,et al. The evolution of the performance of alkaline fuel cells with circulating electrolyte , 2004 .
[113] K. Scott,et al. Direct methanol alkaline fuel cell with catalysed metal mesh anodes , 2004 .
[114] Mathias Schulze,et al. Long term investigations of silver cathodes for alkaline fuel cells , 2004 .
[115] Mathias Schulze,et al. Degradation of nickel anodes in alkaline fuel cells , 2004 .
[116] Keith Scott,et al. A mixed-reactants solid-polymer-electrolyte direct methanol fuel cell , 2004 .
[117] K. Scott,et al. Electrochemical Reduction of Oxygen on Carbon Supported Pt and Pt/Ru Fuel Cell Electrodes in Alkaline Solutions , 2003 .
[118] K. Yasuda,et al. Potential application of anion-exchange membrane for hydrazine fuel cell electrolyte , 2003 .
[119] Jaeweon Cho,et al. Preparation and characterization of LDPE/polyvinylbenzyl trimethyl ammonium salts anion-exchange membrane , 2003 .
[120] L. Zhuang,et al. A feasibility analysis for alkaline membrane direct methanol fuel cell: thermodynamic disadvantages versus kinetic advantages , 2003 .
[121] Chun–Chen Yang,et al. Synthesis and characterization of alkaline polyvinyl alcohol and poly(epichlorohydrin) blend polymer electrolytes and performance in electrochemical cells , 2003 .
[122] R. Slade,et al. The radiation-grafting of vinylbenzyl chloride onto poly(hexafluoropropylene-co-tetrafluoroethylene) films with subsequent conversion to alkaline anion-exchange membranes: optimisation of the experimental conditions and characterisation , 2003 .
[123] F. Alloin,et al. New family of anion conducting polymers: synthesis and characterization , 2003 .
[124] R. Vargas,et al. Thermal and transport properties of the polymer electrolyte based on poly(vinyl alcohol)–KOH–H2O , 2003 .
[125] D. Macfarlane,et al. Novel alkaline polymer electrolytes based on tetramethyl ammonium hydroxide , 2003 .
[126] A. Pandey,et al. Formation and characterization of highly crosslinked anion-exchange membranes , 2003 .
[127] Yang Weihua,et al. Fundamental studies of a new hybrid (inorganic–organic) positively charged membrane: membrane preparation and characterizations , 2003 .
[128] K. Oyaizu,et al. Cationic polysulfonium membrane as separator in zinc–air cell , 2003 .
[129] R. Slade,et al. Alkaline anion-exchange radiation-grafted membranes for possible electrochemical application in fuel cells , 2003 .
[130] Hubert A. Gasteiger,et al. Handbook of fuel cells : fundamentals technology and applications , 2003 .
[131] K. Scott,et al. Salt splitting with radiation grafted PVDF anion-exchange membrane , 2003 .
[132] K. Oyaizu,et al. Ion-Exchange and Apparent Diffusion Coefficients Within Cationic Polysulfonium Coatings Containing Ferricyanide , 2003 .
[133] T. Abe,et al. Preliminary study on direct alcohol fuel cells employing anion exchange membrane , 2002 .
[134] V. Selemenev,et al. Infrared spectroscopy of ion exchange resins: chemical deterioration of the resins , 2002 .
[135] Charles Stone,et al. From curiosity to “power to change the world®” , 2002 .
[136] R. Slade,et al. Comparison of PVDF- and FEP-based radiation-grafted alkaline anion-exchange membranes for use in low temperature portable DMFCs , 2002 .
[137] B. Améduri,et al. Synthesis of ion exchange membranes from ozonized high density polyethylene , 2002 .
[138] Gregor Hoogers,et al. Fuel Cell Technology Handbook , 2002 .
[139] Zhen-Liang Xu,et al. Poly(vinyl chloride) (PVC) hollow fiber ultrafiltration membranes prepared from PVC/additives/solvent , 2002 .
[140] S. Roualdès,et al. Plasma-grafted PVDF polymers as anion exchange membranes for the electrotransport of Cr(VI) , 2002 .
[141] P. Ross,et al. Methanol electrooxidation on supported Pt and PtRu catalysts in acid and alkaline solutions , 2002 .
[142] A. Appleby,et al. Silver–carbon electrocatalyst for air cathodes in alkaline fuel cells , 2002 .
[143] Michel Metayer,et al. Elaboration of ion‐exchange membranes with semi‐interpenetrating polymer networks containing poly(vinyl alcohol) as polymer matrix , 2002 .
[144] A. Arof,et al. Studies of alkaline solid polymer electrolyte and mechanically alloyed polycrystalline Mg2Ni for use in nickel metal hydride batteries , 2002 .
[145] Ned Djilali,et al. An assessment of alkaline fuel cell technology , 2002 .
[146] X. Tong-wen,et al. Fundamental studies on a new series of anion exchange membranes: effect of simultaneous amination-crosslinking processes on membranes ion-exchange capacity and dimensional stability , 2002 .
[147] Kyoichi Saito,et al. Convection-aided collection of metal ions using chelating porous flat-sheet membranes. , 2002, Journal of chromatography. A.
[148] Seong-Ho Choi,et al. Preparation and characterization of polyalkene membranes modified with four different ion-exchange groups by radiation-induced graft polymerization. , 2002, Journal of chromatography. A.
[149] J. Fauvarque,et al. Characterization and use of anionic membranes for alkaline fuel cells , 2001 .
[150] T. Xu,et al. Fundamental studies of a new series of anion exchange membranes: membrane preparation and characterization , 2001 .
[151] K. Oyaizu,et al. SYNTHESIS AND THERMAL PROPERTIES OF A POLYSULFONIUM SALT WITH A COMB-LIKE STRUCTURE , 2001 .
[152] Éric Agel,et al. Utilisation d'electrolyte solide polymere dans les piles a combustibles alcalines , 2001 .
[153] J. Fauvarque. Les piles à combustible et leurs applications , 2001 .
[154] Claude Lamy,et al. Electrocatalytic oxidation of aliphatic alcohols: Application to the direct alcohol fuel cell (DAFC) , 2001 .
[155] R. F. Childs,et al. Tuning the acid recovery performance of poly(4-vinylpyridine)-filled membranes by the introduction of hydrophobic groups , 2001 .
[156] R. Manoharan,et al. Possibilities of prevention of formation of poisoning species on direct methanol fuel cell anodes , 2001 .
[157] Andrzej Lewandowski,et al. Supercapacitor based on activated carbon and polyethylene oxide–KOH–H2O polymer electrolyte , 2001 .
[158] L. Carrette,et al. Fuel Cells - Fundamentals and Applications , 2001 .
[159] M. Marcia West,et al. Formation of pore-filled ion-exchange membranes within situ crosslinking: Poly(vinylbenzyl ammonium salt)-filled membranes , 2001 .
[160] K. Oyaizu,et al. Polysulfonium as a new electrode-modifying polyelectrolyte , 2001 .
[161] G. Maier. Low dielectric constant polymers for microelectronics , 2001 .
[162] T. Sata. Electrodialytic transport properties of anion-exchange membranes prepared from poly(vinyl alcohol), poly(N-ethyl 4-vinylpyridinium salt) and β-cyclodextrin , 2001 .
[163] Michael J. Binder,et al. Phosphoric Acid Fuel Cells , 2000 .
[164] O. Savadogo,et al. Hydrogen/oxygen polymer electrolyte membrane fuel cells (PEMFCs) based on alkaline-doped polybenzimidazole (PBI) , 2000 .
[165] J. Hao,et al. Preparation of solvent-resistant anion-exchange membranes , 2000 .
[166] P. Morrissey,et al. Environmental stress cracking of poly(vinylidene fluoride) and welds in alkaline solutions , 2000 .
[167] T. Tak,et al. Synthesis of Soluble Anion-Exchange Copolyimides and Nanofiltration Membrane Performances , 2000 .
[168] J. Watts,et al. Surface modification of poly(vinylidene fluoride) by alkaline treatment1. The degradation mechanism , 2000 .
[169] Jean-François Fauvarque,et al. Electrochemical properties of an alkaline solid polymer electrolyte based on P(ECH-co-EO) , 2000 .
[170] Michael T. Kelly,et al. A novel high power density borohydride-air cell , 1999 .
[171] Karl Kordesch,et al. Intermittent use of a low-cost alkaline fuel cell-hybrid system for electric vehicles , 1999 .
[172] V. Shahi,et al. Studies on transport properties of surfactant immobilized anion-exchange membrane , 1999 .
[173] E. Tsuchida,et al. Synthesis and photochemical reaction of polyarylenesulfonium salts , 1999 .
[174] Haruhiko Ohya,et al. Preparation of anion exchange membrane based on block copolymers. Part II: the effect of the formation of macroreticular structure on the membrane properties , 1998 .
[175] T. Sata,et al. Thermal membrane potential across anion-exchange membranes with different benzyltrialkylammonium groups , 1998 .
[176] Josef Gsellmann,et al. Long life expectancy of alkaline fuel cells in hybrid vehicles , 1998 .
[177] Tsuchida Eishun,et al. NOVEL SYNTHESIS OF POLYARYLENESULFONIUM CATIONS THROUGH A MULTI-ELECTRON TRANSFER PROCESS * , 1998 .
[178] T. Nonaka,et al. Transport of ferric ions through 2,3-epithiopropyl methacrylate–dodecyl methacrylate–methacrylamide propyl trimethyl ammonium chloride terpolymer membranes , 1998 .
[179] J. Fauvarque,et al. A new class of PEO-based SPEs: structure, conductivity and application to alkaline secondary batteries , 1998 .
[180] H. Ohya,et al. Preparation of anion-exchange membrane based on block copolymers. Part 1. Amination of the chloromethylated copolymers , 1998 .
[181] T. Sata,et al. Preparation and properties of anion exchange membranes having pyridinium or pyridinium derivatives as anion exchange groups , 1998 .
[182] H. Ohya,et al. Crosslinking of anion exchange membrane by accelerated electron radiation as a separator for the all-vanadium redox flow battery , 1997 .
[183] J. Fauvarque,et al. Structural characterization of new poly(ethylene oxide)-based alkaline solid polymer electrolytes , 1997 .
[184] Jen-Ming Yang,et al. The properties of SBS-g-VP copolymer membrane prepared by UV photografting without degassing , 1997 .
[185] S. Turmanova,et al. Radiation‐initiated graft copolymerization of 4‐vinylpyridine onto polyethylene and polytetrafluoroethylene films and anion‐exchange membranes therefrom , 1997 .
[186] K. Yamaguchi,et al. Synthesis and thermal stability of novel anion exchange resins with spacer chains , 1997 .
[187] J. Yang,et al. Preparation and properties of SBS-g-DMAEMA copolymer membrane by ultraviolet radiation. , 1997, Journal of biomedical materials research.
[188] B. Svarfvar,et al. Electron‐beam graft‐modified membranes with externally controlled flux , 1996 .
[189] Erich Gülzow,et al. Alkaline fuel cells: a critical view , 1996 .
[190] T. Sata,et al. Permselectivity between two anions in anion exchange membranes crosslinked with various diamines in electrodialysis , 1996 .
[191] I. Sutherland,et al. Pretreatment of poly(vinyl fluoride) and poly(vinylidene fluoride) with potassium hydroxide , 1996 .
[192] T. Sata,et al. Change of anion exchange membranes in an aqueous sodium hydroxide solution at high temperature , 1996 .
[193] James M. Dickson,et al. A new class of polyelectrolyte-filled microfiltration membranes with environmentally controlled porosity , 1995 .
[194] E. Tsuchida,et al. Synthesis of a New Series of Polycations Based on Poly[oxy-2-[3-(trialkylammonio)propyl]-6-methyl-1,4-phenylene salts] , 1995 .
[195] J. Fauvarque,et al. Alkaline poly(ethylene oxide) solid polymer electrolytes. Application to nickel secondary batteries , 1995 .
[196] J. Fauvarque,et al. Solid polymer electrolytes based on statistical poly (ethylene oxide-propylene oxide) copolymers , 1995 .
[197] J. Cho,et al. Dehydrofluorination of a copolymer of vinylidene fluoride and tetrafluoroethylene by phase transfer catalysis reaction , 1995 .
[198] T. Sata,et al. Effect of Hydrophobicity of Ion Exchange Groups of Anion Exchange Membranes on Permselectivity between Two Anions , 1995 .
[199] B. N. Misra,et al. Graft copolymerization of acrylonitrile and its binary mixture with 4‐vinyl pyridine onto isotactic polypropylene powder by preirradiation method , 1995 .
[200] T. Nonaka,et al. Uphill and selective transport of uranyl ions through 2,3-epithiopropyl methacrylate-dodecyl methacrylate-methacrylamide propyl trimethyl ammonium chloride terpolymer membranes , 1995 .
[201] K. Kordesh,et al. Rechargeable alkaline manganese dioxide/zinc batteries , 1994 .
[202] S. A. Gürsel,et al. Radiation Grafted Membranes for Polymer Electrolyte Fuel Cells , 2005 .
[203] M. Guiver,et al. Polysulfone membranes. IV. Performance evaluation of Radel A/PVP membranes☆ , 1993 .
[204] C. Gavach,et al. Perfluorinated anion exchange membranes: Preparation and preliminary tests of dialysis , 1992 .
[205] John A. Brunea,et al. Preparation of perfluorinated ion exchange membranes and their application in acid recovery , 1992 .
[206] J. Hao,et al. The preparation of quaternized polysulfone membrane for low pressure reverse osmosis , 1991 .
[207] F. Effenberger,et al. Anion-exchange membranes with improved alkaline stability , 1990 .
[208] O. Kedem,et al. Polysulfone-based interpolymer anion exchange membrane , 1990 .
[209] H. Kise,et al. Chemical dehydrofluorination and electrical conductivity of poly(vinylidene fluoride) films , 1989 .
[210] Karl Kordesch,et al. Development of low cost alkaline fuel cells , 1986 .
[211] C. Gavach,et al. Proton leakage through perfluorinated anion exchange membranes , 1986 .
[212] K. Kondo,et al. Novel anion exchange membranes having fluorocarbon backbone: preparation and stability , 1986 .
[213] N. Oyama,et al. Cationic perfluorinated polyelectrolyte as an electrode modifier , 1986 .
[214] H. Kise,et al. Phase transfer catalysis in dehydrofluorination of poly(vinylidene fluoride) by aqueous sodium hydroxide solutions , 1983 .
[215] T. Ohsaka,et al. Kinetics of electron-transfer cross-reactions within redox polymers. Coatings of a protonated polylysine copolymer with incorporated electroactive anions , 1983 .
[216] N. Oyama,et al. Adsorption and desorption of complex metal ions in polyviologen or its polyion complexes with poly(sulphonate)s by the control of a given potential , 1983 .
[217] T. Ohsaka,et al. Diffusional pathways for multiply-charged ions incorporated in polyelectrolyte coatings on graphite electrodes. Cobalt oxalate (Co(C2O4)33-) in coatingsof protonated polylysine , 1983 .
[218] V. Stannett,et al. Novel ion‐containing reverse osmosis membranes. I. Preparation and selected properties , 1981 .
[219] N. Oyama,et al. Evaluation of Rate Constants for Redox Self-Exchange Reactions from Electrochemical Measurements with Rotating-Disk Electrodes Coated with Polyelectrolytes, , 1981 .
[220] N. Oyama,et al. Catalysis of electrode processes by octacyanomolybdenum (IV/V) complexes bound electrostatically to graphite electrodes coated with polyelectrolytes , 1980 .
[221] T. Shimomura,et al. Electrochemical responses of multiply-charged transition metal complexes bound electrostatically to graphite electrode surfaces coated with polyelectrolytes , 1980 .
[222] N. Oyama,et al. Catalysis of electrode processes by multiply-charged metal complexes electrostatically bound to polyelectrolyte coatings on graphite electrodes, and the use of polymer-coated rotating disk electrodes in diagnosing kinetic and conduction mechanisms , 1980 .
[223] K. Kneifel,et al. Properties and long-term behavior of ion exchange membranes , 1980 .
[224] A. Chapiro,et al. Synthesis of permselective membranes by radiation induced grafting of hydrophilic monomers into poly(tetrafluoroethylene) films , 1980 .
[225] V. Kabanov,et al. Radiation‐induced grafting polymerization by the anionic mechanism , 1979 .
[226] V. Kabanov,et al. Radiation-induced grafting polymerization by the ionic mechanism , 1974 .
[227] P. V. Wright,et al. Complexes of alkali metal ions with poly(ethylene oxide) , 1973 .
[228] A. Chapiro,et al. Effets des solvants sur le greffage radiochimique de la vinyl-4-pyridine dans des films de polytetrafluoroethylene , 1973 .
[229] V. Kabanov,et al. Radiation-induced ionic graft copolymerization. , 1973 .
[230] K. Kordesch,et al. Hydrogen‐Air/Lead Battery Hybrid System for Vehicle Propulsion , 1971 .
[231] K. Kordesch,et al. Hydrazine-Air Fuel Cells , 1967, Science.
[232] A. C. Cope,et al. Mechanism of the Hofmann Elimination Reaction: An Ylide Intermediate in the Pyrolysis of a Highly Branched Quaternary Hydroxide , 1963 .
[233] E. F. Bamber,et al. Electricity direct from Coal , 1900, Nature.
[234] W. R. Grove. On a Gaseous Voltaic Battery , 1843 .
[235] W. R. Grove. XLII. On a small voltaic battery of great energy; some observations on voltaic combinations and forms of arrangement; and on the inactivity of a copper positive electrode in nitro-sulphuric acid , 1839 .
[236] W. R. Grove Esq.,et al. XXIV. On voltaic series and the combination of gases by platinum , 1839 .
[237] J. Selman,et al. Molten Carbonate Fuel Cells , 2012 .
[238] T. Okada,et al. Alkali doped poly(vinyl alcohol) for potential fuel cell applications , 2010 .
[239] K. Reifsnider,et al. Durability of PEM Fuel Cell Membranes , 2009 .
[240] G. Scherer. Fuel Cells II , 2008 .
[241] G. Scherer. Fuel Cells I , 2008 .
[242] T. Fuller,et al. 6 – Phosphoric acid fuel cells , 2008 .
[243] S. McPhail,et al. 7 – Molten carbonate fuel cells , 2008 .
[244] G. Maier,et al. Sulfonated Aromatic Polymers for Fuel Cell Membranes , 2008 .
[245] S. Basu. Recent trends in fuel cell science and technology , 2007 .
[246] K. Scott,et al. Direct methanol alkaline fuel cells with catalysed anion exchange membrane electrodes , 2005 .
[247] B. Améduri,et al. Crosslinking of Vinylidene Fluoride-Containing Fluoropolymers , 2005 .
[248] B. Peppley,et al. New solid polymer electrolyte membranes for alkaline fuel cells , 2005 .
[249] L. Akrour. Membrane échangeuse anionique et application en pile à combustible , 2005 .
[250] George A. Olah,et al. Direct Methanol Fuel Cells , 2004 .
[251] G. Kickelbick,et al. Concepts for the incorporation of inorganic building blocks into organic polymers on a nanoscale , 2003 .
[252] Raihan Othman,et al. Ionic conductivity studies of poly(vinyl alcohol) alkaline solid polymer electrolyte and its use in nickel–zinc cells , 2003 .
[253] J. Watts,et al. Surface modification of poly(vinylidene fluoride) by alkaline treatment Part 2. Process modification by the use of phase transfer catalysts , 2001 .
[254] S. Dunn. Hydrogen Futures: Toward a Sustainable Energy System , 2001 .
[255] V. Neagu,et al. Ionic polymers VI. Chemical stability of strong base anion exchangers in aggressive media , 2000 .
[256] J. Fauvarque,et al. Nickel/Metal Hydride Secondary Batteries Using an Alkaline Solid Polymer Electrolyte , 1999 .
[257] D. Hunkeler,et al. Diallyldimethylammonium chloride and its polymers , 1999 .
[258] E. Tsuchida,et al. Photochemical recycling of polyarylene sulfide , 1996 .
[259] Karl V. Kordesch,et al. Fuel cells and their applications , 1996 .
[260] K. Kordesch,et al. Environmental Impact of Fuel Cell Technology , 1995 .
[261] E. Tsuchida,et al. Synthesis of Poly(sulfonium cation) by Oxidative Polymerization of Aryl Alkyl Sulfides , 1995 .
[262] J. A. Barrie,et al. The transport and sorption of water in polyethersulphone, polysulphone, and polyethersulphone/phenoxy blends , 1990 .
[263] H. Wendrock,et al. Microanalytical characterization of microscopic defects in NiCr-based alloys of low impurity content , 1987 .
[264] K. Kordesch,et al. Electrode designs and concepts for bipolar alkaline fuel cells , 1985 .
[265] E. Hegazy,et al. Anionic membranes obtained by radiation grafting of 4-vinylpyridine onto poly(vinyl chloride) , 1985 .
[266] A. Niemöller,et al. Radiation initiated grafting of polymer films — an alternative technique to prepare membranes for various separation problems , 1983 .
[267] G. Ellinghorst,et al. Radiation initiated grafting on fluoro polymers for membrane preparation , 1981 .
[268] W. Ollis,et al. Comprehensive organic chemistry : the synthesis and reactions of organic compounds , 1978 .
[269] A. Chapiro,et al. Synthesis of permselective membranes by radiation induced grafting of hydrophilic monomers into polytetrafluoroethylene films , 1977 .
[270] A. Chapiro. Radiation induced grafting , 1977 .
[271] K. Kordesch,et al. Technology of Hydrogen-Oxygen Carbon Electrode Fuel Cells , 1969 .
[272] A. W. Hofmann. Beiträge zur Kenntniss der flüchtigen organischen Basen , 1850 .