Effect of different ion-aggregating structures on the property of proton conducting membrane based on polyvinyl alcohol

Journal of Membrane Science - Tập 490 - Trang 38-45 - 2015
Yi Yang1, Fei Lu1, Xinpei Gao1, Shuting Xie1, Nan Sun1, Liqiang Zheng1
1Key Laboratory of Colloid and Interface Chemistry, Shandong University, Ministry of Education, Jinan 250100, China

Tài liệu tham khảo

Hill, 2006, Zirconium hydrogen phosphate/disulfonated poly(arylene ether sulfone) copolymer composite membranes for proton exchange membrane fuel cells, J. Membr. Sci., 283, 102, 10.1016/j.memsci.2006.06.016 Elabd, 2003, Triblock copolymer ionomer membranes: Part I. Methanol and proton transport, J. Membr. Sci., 217, 227, 10.1016/S0376-7388(03)00127-3 Sherazi, 2013, Polyethylene-based radiation grafted anion-exchange membranes for alkaline fuel cells, J. Membr. Sci., 44, 148, 10.1016/j.memsci.2013.03.053 Chen, 2014, Proton exchange membrane fuel cell of polybenzimidazole electrolyte doped with phosphoric acid and antimony chloride, Int. J. Hydrog. Energy, 39, 10245, 10.1016/j.ijhydene.2014.04.196 Qiao, 2005, Poly(vinyl alcohol)-poly(2-acrylamido-2-methyl-1-propanesulfonicacid) as a novel proton-conducting fuel cell membrane, Chem. Mater., 17, 2413, 10.1021/cm048260t Ghosh, 2005, Conductivity dependence of PEG content in an anhydrous proton conducting sol–gel electrolyte, Chem. Mater., 17, 661, 10.1021/cm0486969 Ghosh, 2010, Effect of polymer structure on ion transport in an anhydrous proton conducting electrolyte, Chem. Mater., 22, 1483, 10.1021/cm902283r Pan, 2012, Designing advanced alkaline polymer electrolytes for fuel cell applications, Acc. Chem. Res., 45, 473, 10.1021/ar200201x Peckham, 2010, Structure–morphology–property relationships of non-perfluorinated proton-conducting membranes, Adv. Mater., 22, 4667, 10.1002/adma.201001164 Gu, 2011, Self-crosslinking for dimensionally stable and solvent-resistant quaternary phosphonium based hydroxide exchange membranes, Chem. Commun., 47, 2856, 10.1039/c0cc04335d Pan, 2010, Self-crosslinked alkaline polymer electrolyte exceptionally stable at 90°C, Chem. Commun., 46, 8597, 10.1039/c0cc03618h Zhou, 2009, Anionic polysulfone ionomers and membranes containing fluorenyl groups for anionic fuel cells, J. Power Sources, 190, 285, 10.1016/j.jpowsour.2008.12.127 Jing, 2014, Constructing ionic highway in alkaline polymer electrolytes, Energy Environ. Sci., 7, 354, 10.1039/C3EE43275K Ran, 2012, Synthesis of soluble copolymers bearing ionic graft for alkaline anion exchange membrane, RSC Adv., 2, 4250, 10.1039/c2ra20336g Jung, 2011, A perfluorinated anion exchange membrane with a 1,4-dimethylpiperazinium cation, J. Mater. Chem., 21, 6158, 10.1039/c1jm10320b Rhim, 1998, Modification of poly(vinyl alcohol) membranes using sulfur–succinic acid and its application to pervaporation separation of water–alcohol mixtures, J. Appl. Polym. Sci., 68, 1717, 10.1002/(SICI)1097-4628(19980613)68:11<1717::AID-APP1>3.0.CO;2-M Gohil, 2006, Studies on the cross-linking of poly(vinyl alcohol), J. Polym. Res., 13, 161, 10.1007/s10965-005-9023-9 Sharma, 2012, Green and recyclable glycine nitrate (GlyNO3) ionic liquid triggered multicomponent Biginelli reaction for the efficient synthesis of dihydropyrimidinones, RSC Adv., 2, 10648, 10.1039/c2ra22037g Liu, 2014, Novel proton exchange membrane based on crosslinked poly(vinyl alcohol) for direct methanol fuel cells, J. Power Sources, 249, 285, 10.1016/j.jpowsour.2013.10.117 Morancho, 2012, Thermal analysis of enhanced poly(vinyl alcohol)-based proton-conducting membranes crosslinked with sulfonation agents for direct methanol fuel cells, J. Appl. Polym. Sci., 124, 57, 10.1002/app.35500 Boroglu, 2013, Proton-conducting blend membranes of crosslinked poly(vinyl alcohol)–sulfosuccinic acid ester and poly(1-vinyl-1,2,4-triazole) for high temperature fuel cells, Polym. Eng. Sci., 53, 153, 10.1002/pen.23239 Thanganathan, 2012, Enhanced conductivity and electrochemical properties for class of hybrid systems via sol–gel techniques, J. Alloy. Compd., 540, 184, 10.1016/j.jallcom.2012.06.055 Lu, 2013, Preparation and characterization of nonaqueous proton-conducting membranes with protic ionic liquids, ACS Appl. Mater. Interfaces, 5, 7626, 10.1021/am401940y Lin, 2007, Semi-interpenetrating network based on cross-linked poly(vinyl alcohol) and poly(styrene sulfonic acid-co-maleic anhydride) as proton exchange fuel cell membranes, J. Power Sources, 164, 449, 10.1016/j.jpowsour.2006.10.081 Lu, 2014, Crosslinked poly(vinylbenzyl chloride) with a macromolecular crosslinker for anion exchange membrane fuel cells, J. Power Sources, 248, 905, 10.1016/j.jpowsour.2013.08.141 Li, 2005, Electrochemical properties of sulfonated PEEK used for ion exchange membranes, J. Membr. Sci., 254, 147, 10.1016/j.memsci.2004.12.051 Guo, 2013, Synthesis of branched sulfonated poly(aryl ether ketone) copolymers and their proton exchange membrane properties, J. Membr. Sci., 444, 259, 10.1016/j.memsci.2013.05.045 Kim, 2012, Pendant-sulfonated poly(arylene ether ketone) (PAEK) membranes cross-linked with a proton conducting reagent for fuel cells, J. Membr. Sci., 405–406, 176, 10.1016/j.memsci.2012.03.007 Crupi, 2008, A new insight on the hydrogen bonding structures of nanoconfined water: a Raman study, J. Raman Spectrosc., 39, 244, 10.1002/jrs.1857 Luu, 2013, Proton conducting electrolyte membranes based on the pendant-sulfonated poly(arylene ether ketone)/polyorganosiloxane interpenetrating polymer networks, J. Membr. Sci., 430, 37, 10.1016/j.memsci.2012.12.015 Chen, 2013, Ion clustering in quaternary ammonium functionalized benzylmethyl containing poly(arylene ether ketone)s, Macromolecules, 46, 9270, 10.1021/ma401620m Park, 2011, Oriented morphology and anisotropic transport in uniaxially stretched perfluorosulfonate ionomer membranes, Macromolecules, 44, 5701, 10.1021/ma200865p Pang, 2014, Polymer electrolyte membranes based on poly(arylene ether)s with flexible disulfophenyl pendant, J. Power Sources, 263, 59, 10.1016/j.jpowsour.2014.03.100 Mochizuki, 2014, Temperature- and humidity-controlled SAXS analysis of proton-conductive ionomer membranes for fuel cells, ChemSusChem, 7, 729, 10.1002/cssc.201301322 Xie, 2014, Synthesis of highly branched sulfonated polym ers and the effects of degree of branching on properties of branched sulfonated polymers as proton exchange membranes, J. Power Sources, 262, 328, 10.1016/j.jpowsour.2014.03.064 Zhao, 2011, Synthesis of poly(arylene ether sulfone)-block-sulfonated polybutadiene: the selective post-sulfonation of block copolymers as proton exchange membranes, Polym. Adv. Technol., 22, 2336, 10.1002/pat.1767 Li, 2011, Densely sulfophenylated segmented copoly(arylene ether sulfone) proton exchange membranes, Macromolecules, 44, 4901, 10.1021/ma200937w Xu, 2013, Sulfonated poly(aryl ether sulfone) containing 1,3,4-oxadiazole as proton exchange membranes for medium-high temperature fuel cells, J. Polym. Res., 20, 1 Kim, 2012, Synthesis of polyethylene-based proton exchange membranes containing pe backbone and sulfonated poly(arylene ether sulfone) side chains for fuel cell applications, Macromolecules, 45, 2460, 10.1021/ma202492d Lebrun, 2002, Elaboration of ion-exchange membranes with semi-interpenetrating polymer networks containing poly(vinyl alcohol) as polymer matrix, J. Appl. Polym. Sci., 84, 1572, 10.1002/app.10420 Anis, 2012, Sulfonated PVA/PBI based crosslinked composites towards anhydrous proton conductive polymer electrolyte membranes for fuel cells, Int. J. Electrochem. Sci., 7, 9174, 10.1016/S1452-3981(23)16189-X Hickner, 2004, Alternative polymer systems for proton exchange membranes (PEMs), Chem. Rev., 104, 4587, 10.1021/cr020711a Abu-Saied, 2013, Sulphonated poly(glycidyl methacrylate) grafted cellophane membranes: novel application in polyelectrolyte membrane fuel cell (PEMFC), J. Polym. Res., 20, 1 Li, 2014, Assessing the influence of side-chain and main-chain aromatic benzyltrimethyl ammonium on anion exchange membranes, ACS Appl. Mater. Interfaces, 6, 7585, 10.1021/am500915w Zhang, 2014, Proton transfer in the interface of Nafion and sulfonated polypyrrolone, J. Power Sources, 258, 5, 10.1016/j.jpowsour.2014.01.016 Zhong, 2014, Fabrication and properties of poly(vinyl alcohol)-based polymer electrolyte membranes for direct methanol fuel cell applications, Int. J. Hydrog. Energy, 39, 17857, 10.1016/j.ijhydene.2014.08.040 Maiti, 2012, Where do poly(vinyl alcohol) based membranes stand in relation to Nafion® for direct methanol fuel cell applications?, J. Power Sources, 216, 48, 10.1016/j.jpowsour.2012.05.057 Zeng, 2012, Synthesis and characterization of crosslinked poly(vinyl alcohol)/layered double hydroxide composite polymer membranes for alkaline direct ethanol fuel cells, Int. J. Hydrog. Energy, 37, 18425, 10.1016/j.ijhydene.2012.09.089 Heo, 2013, The effect of sulfonated graphene oxide on sulfonated poly(ether ether ketone) membrane for direct methanol fuel cells, J. Membr. Sci., 425–426, 11, 10.1016/j.memsci.2012.09.019 Li, 2013, Ultrathin composite membrane of alkaline polymer electrolyte for fuel cell applications, J. Mater. Chem. A, 1, 12497, 10.1039/c3ta12626a Zhang, 2011, Synthesis and properties of side-chain-type sulfonated poly(phenylene oxide) for proton exchange membranes, J. Membr. Sci., 373, 160, 10.1016/j.memsci.2011.03.002 Gao, 2011, Novel cardo poly(arylene ether sulfone)s with pendant sulfonated aliphatic side chains for proton exchange membranes, J. Membr. Sci., 372, 49, 10.1016/j.memsci.2011.01.039 Cui, 2014, Proton-conducting membranes based on side-chain-type sulfonated poly(ether ketone/ether benzimidazole)s via one-pot condensation, J. Membr. Sci., 465, 100, 10.1016/j.memsci.2014.04.019 Li, 2007, Cross-linked polybenzimidazole membranes for fuel cells, Chem. Mater., 19, 350, 10.1021/cm0627793 Yasuda, 2005, Synthesis and properties of polyimide ionomers containing sulfoalkoxy and fluorenyl groups, J. Polym. Sci. Polym. Chem., 43, 4439, 10.1002/pola.20843 Yin, 2011, Sulfonated polyimides with flexible aliphatic side chains for polymer electrolyte fuel cells, J. Membr. Sci., 367, 211, 10.1016/j.memsci.2010.10.054 Li, 2014, Assessing the influence of side-chain and main-chain aromatic benzyltrimethyl ammonium on anion exchange membranes, ACS Appl. Mater. Interfaces, 6, 7585, 10.1021/am500915w Pang, 2014, Poly(aryl ether ketone) containing flexible tetra-sulfonated side chains as proton exchange membranes, Polym. Chem., 5, 1477, 10.1039/C3PY01350B Pang, 2008, Synthesis and characterization of sulfonated poly(arylene ether)s with sulfoalkyl pendant groups for proton exchange membranes, J. Membr. Sci., 318, 271, 10.1016/j.memsci.2008.02.051 Luu, 2013, Proton conducting electrolyte membranes based on the pendant-sulfonated poly(arylene ether ketone)/polyorganosiloxane interpenetrating polymer networks, J. Membr. Sci., 430, 37, 10.1016/j.memsci.2012.12.015 Yang, 2014, Preparation and characterization of directional conducting and lower methanol permeable ultrathin membrane based on poly(vinyl alcohol)and imidazolium compounds, Int. J. Hydrog. Energy, 39, 17191, 10.1016/j.ijhydene.2014.08.055 Qiao, 2005, New highly proton-conducting membrane poly(vinylpyrrolidone) (PVP) modified poly(vinyl alcohol)/2-acrylamido-2-methy l-1-propanesulfonic acid (PVA-PAMPS) for low temperature direct methanol fuel cells (DMFCs), Polymer, 46, 10809, 10.1016/j.polymer.2005.09.007 Cheng, 2014, Preparation and characterization of sulfonated poly(arylene ether ketone) copolymers with pendant sulfoalkyl groups as proton exchange membranes, J. Power Sources, 260, 307, 10.1016/j.jpowsour.2014.03.023