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Composite Polymers for Electrolyte Membrane Technologies

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Composite Polymers for Electrolyte Membrane Technologies ( composite-polymers-electrolyte-membrane-technologies )

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Molecules 2020, 25, 1712 41 of 44 153. Amjadi,M.;Rowshanzamir,S.;Peighambardoust,S.J.;Hosseini,M.G.Investigationofphysicalproperties and cell performance of Nafion/TiO2 nanocomposite membranes for high temperature PEM fuel cells. Int. J. Hydrog. Energy 2010, 35, 9252–9260. [CrossRef] 154. Matos,B.R.;Santiago,E.I.;Rey,J.F.Q.;Ferlauto,A.S.;Traversa,E.;Linardi,M.;Fonseca,F.C.Nafion-based composite electrolytes for proton exchange membrane fuel cells operating above 120 ◦C with titania nanoparticles and nanotubes as fillers. J. Power Sources 2011, 196, 1061–1068. [CrossRef] 155. Zhengbang,W.;Tang,H.;Mu,P.Self-assemblyofdurableNafion/TiO2nanowireelectrolytemembranesfor elevated-temperature PEM fuel cells. J. Membr. Sci. 2011, 369, 250–257. [CrossRef] 156. Ketpang,K.;Shanmugam,S.;Suwanboon,C.;Chanunpanich,N.;Lee,D.Efficientwatermanagementof composite membranes operated in polymer electrolyte membrane fuel cells under low relative humidity. J. Membr. Sci. 2015, 493, 285–298. [CrossRef] 157. Jun,Y.;Zarrin,H.;Fowler,M.;Chen,Z.Functionalizedtitaniananotubecompositemembranesforhigh temperature proton exchange membrane fuel cells. Int. J. Hydrog. Energy 2011, 36, 6073–6081. [CrossRef] 158. Ketpang,K.;Son,B.;Lee,D.;Shanmugam,S.PorouszirconiumoxidenanotubemodifiedNafioncomposite membrane for polymer electrolyte membrane fuel cells operated under dry conditions. J. Membr. Sci. 2015, 488, 154–165. [CrossRef] 159. Marani,D.;D’Epifanio,A.;Traversa,E.;Miyayama,M.;Licoccia,S.TitaniaNanosheets(TNS)/Sulfonated Poly Ether Ether Ketone (SPEEK) Nanocomposite Proton Exchange Membranes for Fuel Cells. Chem. Mater. 2009, 22, 1126–1133. [CrossRef] 160. Devrim,Y.;Erkan,S.;Baç,N.;Erog ̆lu,I.Preparationandcharacterizationofsulfonatedpolysulfone/titanium dioxide composite membranes for proton exchange membrane fuel cells. Int. J. Hydrog. Energy 2009, 34, 3467–3475. [CrossRef] 161. Sambandam,S.;Ramani,V.SPEEK/functionalizedsilicacompositemembranesforpolymerelectrolytefuel cells. J. Power Sources 2007, 170, 259–267. [CrossRef] 162. Therese,J.B.A.J.H.;Gayathri,R.;Selvakumar,K.;Prabhu,M.R.;Sivakumar,P.Incorporationofsulfonated silica nano particles into polymer blend membrane for PEM fuel cell applications. Mater. Res. Express 2019, 6, 11. 163. Sahin, A.; Tasdemir, H.M.; Ar, I. Improved performance and durability of sulfonated polyether ether ketone/cerium phosphate composite membrane for proton exchange membrane fuel cells. Ionics 2019, 25, 5163–5175. [CrossRef] 164. Carbone,A.;Pedicini,R.;Saccà,A.;Gatto,I.;Passalacqua,E.CompositeS-PEEKmembranesformedium temperature polymer electrolyte fuel cells. J. Power Sources 2008, 178, 661–666. [CrossRef] 165. Carbone,A.;Saccà,A.;Gatto,I.;Pedicini,R.;Passalacqua,E.InvestigationoncompositeS-PEEK/H-BETA MEAs for medium temperature PEFC. Int. J. Hydrog. Energy 2008, 33, 3153–3158. [CrossRef] 166. Özdemir,Y.;Üregen,N.;Devrim,Y.Polybenzimidazolebasednanocompositemembraneswithenhanced proton conductivity for high temperature PEM fuel cells. Int. J. Hydrog. Energy 2017, 42, 2648–2657. [CrossRef] 167. Lee, S.; Seo, K.; Ghorpade, R.V.; Nam, K.H.; Han, H. High temperature anhydrous proton exchange membranes based on chemically-functionalized titanium/polybenzimidazole composites for fuel cells. Mater. Lett. 2020, 263, 127167. [CrossRef] 168. Ooi, Y.X.; Ya, K.Z.; Maegawa, K.; Tan, W.K.; Kawamura, G.; Muto, H.; Matsuda, A. CHS-WSiA doped hexafluoropropylidene-containing polybenzimidazole composite membranes for medium temperature dry fuel cells. Int. J. Hydrog. Energy 2019, 44, 32201–32209. [CrossRef] 169. Devrim,Y.;Devrim,H.;Eroglu,I.Polybenzimidazole/SiO2hybridmembranesforhightemperatureproton exchange membrane fuel cells. Int. J. Hydrog. Energy 2016, 41, 10044–10052. [CrossRef] 170. Plackett, D.; Siu, A.; Li, Q.; Pan, C.; Jensen, J.O.; Nielsen, S.F.; Permyakova, A.A.; Bjerrum, N.J. High-temperature proton exchange membranes based on polybenzimidazole and clay composites for fuel cells. J. Membr. Sci. 2011, 383, 78–87. [CrossRef] 171. Aili,D.;Zhang,J.;Sondergaard,T.;Zhu,H.;Yang,T.;Liu,J.;Forsyth,M.;Pan,C.;Jensen,J.O.;Cleemann,L.N.; et al. Exceptional durability enhancement of PA/PBI based polymer electrolyte membrane fuel cells for high temperature operation at 200 ◦C. J. Mater. Chem. A 2016, 4, 4019–4024. [CrossRef]

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